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王鹏
讲席教授
美国科学促进会(AAAS)会士
0755-88015584
wangp6@sustech.edu.cn

个人简介

王鹏,南方科技大学医学院讲席教授,博士生导师。中国生物物理学会糖生物学分会会长。1984年获南开大学化学理学学士学位,1990年获美国加州大学伯克利分校化学博士学位。获美国科学促进会(AAAS)会士,俄亥俄州杰出学者,佐治亚州研究联盟杰出学者荣誉称号。2022年天津市技术发明奖一等奖获得者;2021年美国糖化学界最高奖Claude S. Hudson奖获得者,是首位获此奖的中国大陆出生学者;2021年中国生物工程学会第四届张树政糖科学奖杰出成就奖获得者;2002年美国化学会糖化学部Horace S. Isbell奖获得者;2000年与C.-H. Wong 教授共同获得美国总统绿色化学奖。历任美国迈阿密大学化学系助理教授,美国韦恩州立大学化学系正教授、终生教授,美国俄亥俄州立大学生物化学与化学系讲席教授,美国佐治亚州立大学化学系讲席教授、系主任。曾兼任南开大学药学院院长(半职),建立山东大学国家糖工程技术研究中心并担任中心主任。王鹏教授的研究领域涉及核酸科学,糖科学,药物化学,药物递送材料。他在各种国际学术刊物上发表学术论著467篇(H-index 57 (Google Scholar) and 47 (Web of Science),参与7部学术专著的编写,拥有美国和中国专利19个。

 

育经历 :
1980-1984:中国,南开大学,化学理学学士

1985-1990:美国,加州大学伯克利分校,有机/生物有机化学博士

1991-1992:美国,加州大学伯克利分校博士后

1992-1994:美国,Scripps Research Institute 斯克里普斯研究所,博士后

 

工作经历:
1994/08-1997/07:美国迈阿密大学化学系,助理教授

1997/07-2001/08:美国韦恩州立大学化学系,副教授

1998年获得韦恩州立大学终身教授

2001/08-2003/07:美国韦恩州立大学化学系,正教授

                                Barbara Ann Karmanos癌症研究所成员

                                韦恩州立大学药物设计研究所成员

2007:申请成立国家糖工程技术研究中心,担任糖中心主任

2003/08-2011/07:美国俄亥俄州立大学生物化学与化学系,讲席教授

                               俄亥俄州杰出学者 (Ohio Eminent Scholar)

2007/01-2011/08:中国南开大学药学院,院长(半职)

2011/09-至今:美国佐治亚州立大学化学系,讲席教授

                         佐治亚州研究联盟(Georgia Research Alliance)杰出学者

2015/04-2018/06:美国佐治亚州立大学化学系,系主任

2019/09-至今:  南方科技大学医学院,讲席教授

 

研究方向:

RNA药物(包括mRNA和寡核苷酸药物)研发,合成生物学,糖生物学,脂质纳米颗粒递送系统,核酸化学和生物学,糖化学和生物学,单细胞测序和质谱流式,生物信息学,抗体药物研发,多肽化学,糖蛋白质组学。

 

荣誉称号:
2021年  美国化学会克劳德·哈德森奖Claude S. Hudson Award(旨在表彰碳水化合物化学在教育、研究或应用方面的杰出贡献。每两年颁发一次的奖项是在奇数年份颁发的。)

2012年  美国科学促进会(AAAS)会士

2009年  比尔和梅琳达门基金会的第一阶段大挑战探索奖的获得者

2002年  美国化学学会糖化学部的Horace S. Isbell奖(美国化学学会每年只颁发给一位在糖化学/糖生物学领域有杰出贡献且不到41岁的科学家)

2000年  与C.-H. Wong 教授共同获得美国总统绿色化学奖

2000年  Metro Detroit’s Creator from Crain’s Detroit Business

2000年  美国韦恩州立大学 Career Development Chair Award

1999年  Camille和Henry Dreyfus基金会Camille Dreyfus教师学者奖

1996年  美国 NIH First Independent Research Support and Transition Award

1988年  NATO 高级研究所NATO奖学金

 

期刊编辑:
副主编:Organic Chemistry Frontiers (2018-至今)

编辑成员:Journal of Biological Chemistry (2014-至今)

编辑成员:American Journal of Biomedical Sciences(2008-至今)

编辑成员:Carbohydrate Research(2005-2012)

编辑成员:Applied and Environmental Microbiology(2003-至今)

编辑成员:Marine Drugs(2002-至今)

区域编辑:Current Organic Chemistry (2002-至今)

编辑成员:Medicinal Research Reviews(2001-至今)

 

专业学会:
美国化学学会

美国科学促进会

美国生物化学与分子生物学学会

美国微生物学会

糖生物学学会

 

发明专利:

  1. Cheng, H. N.; Nickol, R. G.; Wang, P. G.; Li, J. “Galactosylated hydroxylalkyl polysaccharides”, US 6433161, Aug 13, 2002.

  2. Wang, P. G.; Xie, W; Qiao, L.; Nickol, R. G.; Cheng, H.N. “Acetoacetylated saccarides and process of making the same”, US 6528644, Mar 4,2003.

  3. Wang, P. G.; Xie, W.; Qiao, L.; Cheng, H. N.; Murphy, D. J.; Gu, Q.-M.  “Novel oxime-linked polysaccharides and methods of preparing the same”, US 6846923, Jan 25, 2005.

  4. Wang, G.; Wu, X.; Tang, X. “Enzyme activated nitric oxide donors”, US 6867194, Mar 15, 2005

  5. Zhang, G.; Fang, L.; Wang, P. G.; Sun, D. “Multidrug resistant anticancer anthracyclines”, US7737123, Jun 15,

  6. Wang, P. G.; Chen, Wenlan Alex; Martin, Brian; Mautino, Mario R.; Vahanian, Nicholas N.; Link, Charles J., Jr.  “Rhamnose and Forssman conjugate immunogens” US 2013149331 (A1), June 13, 2013.

  7. Wang, P. G.; Kondengaden, M. S.; Zhang, Q.; Zhang, L. “Histone Deacetylase and Histone Methyltransferase Inhibitors and Methods of Making and Using Thereof” US Provisional Application No. 62/356,124. 2017.

  8. Wang, P. G.; Song, J.; Kondengaden, M. S.; Parameswaran, A.; Zhang, H.; Wen, L. “DNA-Glycan Conjugates and Methods of Use” US Provisional Patent Application No.62/514,419 GSURF Ref. No. 2017-18PROV1 – MRG Ref. No. 548.00010160.

 

学术专著:

  1. Wang, Peng George; Bertozzi, Carolyn R.  “Glycochemistry: Principles, Synthesis, and Applications” Marcel Dekker, Inc. New York, 2001.

  2. Wang, Peng George; Ichikawa, Yoshi.  “Synthesis of Carbohydrates through Biotechnology” ACS Symposium Series 224, 2003.

  3. Wang, Peng George; Cai, Tingwei; Taniguchi, Naoyuki. “Nitric Oxide Donors and Their Applications” Wiley-VCH, 2004.

  4. Chen, Xi; Halcomb, Randall L.; Wang, Peng George“Chemical Glycobiology” ACS Symposium Series 990, 2008.

  5. Comprehensive Natural Products II: Chemistry and Biology by Elsevier 2008. 6: CARBOHYDRATES, NUCLEOSIDES AND NUCLEIC ACIDS Edited by Wong, Chi-Huey and Wang, Peng George.

  6. Guan, Wanyi; Li, Lei; Wang, Peng George“Synthetic Glycomes and Glycoarrays” RSC Chemical Biology Book Series 2018.

  7. Wang, Peng George; Kondengaden, Shukkoor, M.;  Ma, Cheng   "Advances in Carbohydrate–Protein Interactions: Techniques and Applications"  ACS Book Series #1346  2020.

 

近5年发表论文:
一共发表SCI论文440余篇,H-指数 57 (Google Scholar) and 47 (Web of Science)  (Orcid Id: 0000-0003-3335-6794),以下为近5年发表的论文(按时间顺序排列)

  1. Dimitri Papukashvili, Nino Rcheulishvili, Cong Liu, Fengfei Xie, Deependra Tyagi, Yunjiao He*, Peng George Wang*. “Perspectives on miRNAs Targeting DKK1 for Developing Hair Regeneration Therapy”. Cells 2021 Oct 30. DOI: /10.3390/cells10112957

  2. Yunjiao He, Jing Qu, Lan Wei, Shumin Liao, Nianzhen Zheng, Yingzi Liu, Xingyun Wang, Yue Jing, Clifton Kwang-Fu Shen, Chong Ji, Guxun Luo, Yiyun Zhang, Qi Xiang, Yang Fu, Shuo Li, Yunping Fan, Shisong Fang, Peng Wang*, Liang Li*. “Generation and Effect Testing of a SARS-CoV-2 RBD-Targeted Polyclonal Therapeutic Antibody Based on a 2-D Airway Organoid Screening System”. Frontiers in Immunology 2021 Oct 18. DOI: 10.3389/fimmu.2021.689065

  3. Yu, Hai; Gadi, Madhusudhan Reddy ; Bai, Yuanyuan; Zhang, Libo; Li, Lei; Yin, Jun; Wang, Peng; Chen, Xi. “Chemoenzymatic Total Synthesis of GM3 Gangliosides Containing Different Sialic Acid Forms and Various Fatty Acyl Chains”. The Journal of Organic Chemistry 2021 Jun 21. DOI: 10.1021/acs.joc.1c00450

  4. Shuaishuai Wang, Congcong Chen, Madhusudhan Reddy Gadi, Varma Saikam, Ding Liu, He Zhu, Roni Bollag, Kebin Liu, Xi Chen, Fengshan Wang, Peng George Wang*, Peixue Ling*, Wanyi Guan*, and Lei Li*. “Chemoenzymatic Modular Assembly of O-GalNAc Glycans for Functional Glycomics” Nature Communications 2021 12, 3573. DOI: 10.1038/s41467-021-23428-x

  5. Xin Zhou, Zhiyuan Peng, Peng George Wang, Qingchao Liu*, and Tiezheng Jia*. “Atom Transfer Radical Addition to Styrenes with Thiosulfonates Enabled by Synergetic Copper/Photoredox Catalysis” Organic Letters 2021 Feb 5, 23(3):1054-1059.

  6. Zhao J, Yang Y, Huang H, Li D, Gu D, Lu X, Zhang Z, Liu L, Liu Y, He Y, Sun B, Wei M, Yang G, Wang X, Zhang L, Zhou X, Xing M,Wang PGRelationship between the ABO Blood Group and the COVID-19 Susceptibility”  Clinical Infectious Diseases, 2020,  August  4.(IF=8.313)

  7. Liu D, Zhang J, Zhu H, Wang M, Polizzi SJ, Jones MT, Li L, Gadi MR, Wang PG, Ma C, Huang W. “Enzymatic depolymerization of streptococcus pneumoniae type 8 polysaccharide”  Carbohydr Res. 2020 May 13;495:108024.(IF=1.841)

  8. Ma J, Li Y, Li L, Yue K, Liu H, Wang J, Xi Z, Shi M, Zhao S, Ma Q, Liu S, Guo S, Liu J, Hou L, Wang C,Wang PG, Tian Z, Xie S.  “A Polyamine-Based Dinitro-Naphthalimide Conjugate as Substrates for Polyamine Transporters Preferentially Accumulates in Cancer Cells and Minimizes Side Effects in vitroand in vivo Front Chem. 2020 Apr 9;8:166. (IF=3.693)

  9. Li L, Guan W, Zhang G, Wu Z, Yu H, Chen X, Wang PG. “Microarray analyses of closely related glycoforms reveal different accessibilities of glycan determinants on N-glycan branches” Glycobiology. 2020 Apr 20;30(5):334-345. (IF=4.06)

  10. Zhu H, Wang S, Liu D, Ding L, Chen C, Liu Y, Wu Z, Bollag R, Liu K, Alexander WM, Yin J, Ma C, Li L, Wang PG. “Identifying Sialylation Linkages at the Glycopeptide Level by Glycosyltransferase Labeling Assisted Mass Spectrometry (GLAMS)”  Anal Chem. 2020 May 5;92(9):6297-6303.(IF=6.785)

  11. Li Z, Zhang Q, Ashline D, Zhu Y, Lasanajak Y, Chernova T, Reinhold V, Cummings RD, Wang PG, Ju T, Smith DF, Song X. “Amplification and Preparation of Cellular O-Glycomes for Functional Glycomics” Anal Chem. 2020 Jul 13.(IF=6.785)

  12. Zhang J, Liu D, Saikam V, Gadi MR, Gibbons C, Xuan F, Yu J, Kondengaden MS, Wen L, Wang PG, Song H. “Machine Driven Chemoenzymatic Synthesis of Glycopeptide”  Angew Chem Int Ed Engl. 2020 Jul 16. (IF=12.959)

  13. De Leoz MLA, Duewer DL, Fung A, Liu L, Yau HK, Wang, PG, Leize-Wagner E, Maier S, Zeck A, Heck AJR, Yang Y, Haselberg R, Yu YQ, Alley W, Leone JW, Yuan H, Stein SE.  “NIST Interlaboratory Study on Glycosylation Analysis of Monoclonal Antibodies: Comparison of Results from Diverse Analytical Methods” Mol Cell Proteomics. 2020 Jan;19(1):11-30.(IF=4.87)

  14.  Ma, J., Li, L., Yue, K., Li, Y., Liu, H., Wang, P.G, Wang, C, Wang, J., Luo, W., Xie, S.“Bromocoumarinplatin, targeting simultaneously mitochondria and nuclei with p53 apoptosis pathway to overcome cisplatin resistance.”2020,Bioorg Chem. Mar 20;99:103768. (IF=4.381)

  15.   Purohit S, Ferris DG, Alvarez M, Tran PMH, Tran LKH, Mysona DP, Hopkins D, Zhi W, Dun B, Wallbillich JJ, Cummings RD, Wang, P.G, She JX. “Better survival is observed in cervical cancer patients positive for specific anti-glycan antibodies and receiving brachytherapy.”2020,Gynecol Oncol. Apr;157(1):181-187. (IF=4.623)

  16.   Wang S, Rong Y, Wang Y, Kong D, Wang, P.G, Chen M, Kong Y.“Homogeneous production and characterization of recombinant N-GlcNAc-protein in Pichia pastoris.”2020, Microb Cell Fact. Jan 13;19(1):7. (IF=4.187)

  17.   Liu H, Ma J, Li Y, Yue K, Li L, Xi Z, Zhang X, Liu J, Feng K, Ma Q, Liu S, Guo S, Wang, P.G, Wang C, Xie S. “Polyamine-Based Pt(IV) Prodrugs as Substrates for Polyamine Transporters Preferentially Accumulate in Cancer Metastases as DNA and Polyamine Metabolism Dual-Targeted Antimetastatic Agents.”2019, Med Chem.Dec 26;62(24):11324-11334.

  18.   Liu L, Li L, Ma C, Shi Y, Liu C, Xiao Z, Zhang Y, Tian F, Gao Y, Zhang J, Ying W, Wang, P.G, Zhang L7. “O-GlcNAcylation of Thr12/Ser56in short-form O-GlcNAc transferase (sOGT) regulates its substrate selectivity.” 2019,Biol Chem. Nov 8;294(45):16620-16633.

  19. Liu, J., Li, S., Aslam, N.A., Zheng, F., Yang, B., Cheng, R., Wang, N., Rozovsky, S., Wang, P.G., Wang, Q. and Wang, L..“Genetically Encoding Photocaged Quinone Methide to Multitarget Protein Residues Covalently in Vivo.”  2019, Journal of the American Chemical Society,141 (24) 9458-9462

  20. Zhang, P., Liu, P., Xu, Y., Liang, Y., Wang, P.G. and Cheng, J., "N-acetyltransferases from three different organisms displaying distinct selectivity toward hexosamines and N-terminal amine of peptides." 2019. Carbohydrate research472: 72-75.

  21. Davies-Bolorunduro, O.F., Adeleye, I.A., Akinleye, M.O. and Wang, P.G.. “Anticancer potential of metabolic compounds from marine actinomycetes isolated from Lagos Lagoon sediment.”  2019,  J Pharm Anal.Jun, 9(3):201-208. PMID:31297298

  22. Wu, Q., Liu, F., Song, Y., Meng, Q., Zhang, X., Li, H., Sun, J., Gao, H., Wang, P.G., Kong, Y. and Chen, M. “A new strategy for high-throughput identification of human gut microbiota containing specific monosaccharide.2019, Sci China Life Sci.Jul, 62(7):985-987. PMID:31098892

  23. Yang, B., Wang, N., Schnier, P.D., Zheng, F., Zhu, H., Polizzi, N.F., Ittuveetil, A., Saikam, V., DeGrado, W., Wang, Q. and Wang, P.G.. “Genetically Introducing Biochemically Reactive Amino Acids Dehydroalanine and Dehydrobutyrine in Proteins.”  2019,  Journal of the American Chemical Society, PMID:31038942

  24. Wei, M, Wang, P.G..  “Desialylation in physiological and pathological processes: New target for diagnostic and therapeutic development.”  2019,  Prog Mol Biol Transl Sci,162:25-57. PMID:30905454

  25. Wang, H, Yang, X, Zhao, C, Wang, P.G., Wang, X.  “Glucose-conjugated platinum(IV) complexes as tumor-targeting agents: design, synthesis and biological evaluation.”  2019,  Bioorg Med Chem.  Apr 15, 27(8):1639-1645. PMID:30852077

  26. Wang, J., Li, S., Zang, L., Zhu, H., Guo, J., Zhang, J., Wen, L., Chen, Y., Li, Y., Chen, X. and Wang, P.G.. “Production of Glycopeptide Derivatives for Exploring Substrate Specificity of Human OGA Toward Sugar Moiety.”  2019, Front Chem.Jan 14, 6:646. PMID:30693278

  27. Hou, J., Pan, Y., Zhu, D., Fan, Y., Feng, G., Wei, Y., Wang, H., Qin, K., Zhao, T., Yang, Q. and Zhu, Y., Che, Y., Liu, Y., Cheng, J., Kong, D., Wang P.G., Shen, J., Zhao, Q..  “Targeted delivery of nitric oxide via a 'bump-and-hole'-based enzyme-prodrug pair.2019Nature Chemical BiologyFeb;15(2):151-160. PMID:30598545

  28. Li, X., Ding, L., Li, X., Zhu, H., Gashash, E.A., Li, Z., Wang, P.G.and Ma, C.. “An integrated proteomic and glycoproteomic study for differences on glycosylation occupancy in rheumatoid arthritis.” 2019, Analytical and bioanalytical chemistry, pp.1-8.

  29. Zhang, P., Liu, P., Xu, Y., Liang, Y., Wang, P.G.and Cheng, J.. “N-acetyltransferases from three differen t organisms displaying distinct selectivity toward hexosamines and N-terminal amine of peptides.” 2019, Carbohydrate Research, 472, pp.72-75.

  30. Ma, Z., Wang, P. G.. “RecET Direct Cloning of Polysaccharide Gene Cluster from Gram-Negative Bacteria.” In Bacterial Polysaccharides. 2019, Bacterial Polysaccharides. Humana Press, pp 15-23.

  31.    Hu, X., Pang, X., Wang, P.G.and Chen, M.. “Isolation and characterization of an antioxidant exopolysaccharide produced by Bacillus sp. S-1 from Sichuan Pickles.” 2019, Carbohydrate Polymers, 204, pp.9-16.

  32.   Wang, J., Zhang, D., Wen, Y., Cao, X., Ma, J. and Wang, P.G.. “Efficient chemoenzymatic synthesis of UDP-α-6-N3-glucose.” 2019, Bioorganic & Medicinal Chemistry Letters. 29 (9), 1148-1151

  33. Aloor A, Zhang J, Gashash E, Parameswaran A, Chrzanowski M, Ma C, Diao Y, Wang P.G, Xiao W. “Site-Specific N-Glycosylation on the AAV8 Capsid Protein”   2018, Viruses   10, 644.

  34. Hu, X., Yang, C., Wang, P.G. and Zhang, G.L.. “ADP-heptose: A new innate immune modulator.” 2018,  Carbohydrate Research. 473,  pp. 123-128.

  35. Zhang, J., Chen, C., Gadi, M.R., Gibbons, C., Guo, Y., Cao, X., Edmunds, G., Wang, S., Liu, D., Yu, J. and Wen, L., Wang, P.G.. “Machine‐Driven Enzymatic Oligosaccharide Synthesis by Using a Peptide Synthesizer.” 2018, Angewandte Chemie International Edition, 130 (51), 16880-16884.

  36. Ma, Z., Zhang, H., Li, L., Chen, M. and Wang, P.G.. “Direct Cloning of Bacterial Surface Polysaccharide Gene Cluster for One-Step Production of Glycoconjugate Vaccine.” 2018, ACS Infectious Diseases. 5 (1), pp 74–78.

  37. Wen, L., Edmunds, G., Gibbons, C., Zhang, J., Gadi, M.R., Zhu, H., Fang, J., Liu, X., Kong, Y. and Wang, P.G.. “Toward Automated Enzymatic Synthesis of Oligosaccharides.” 2018, Chemical Reviews, 118(17), pp.8151-8187.

  38. Ma, Z., Zhang, H., Wang, P.G., Liu, X.W. and Chen, M.. “Peptide adjacent to glycosylation sites impacts immunogenicity of glycoconjugate vaccine.” 2018, Oncotarget, 9(1), p.75.

  39. Li, S., Wang, J., Zang, L., Zhu, H., Guo, J., Zhang, J., Wen, L., Chen, Y., Li, Y., Chen, X. and Wang, P.G.. “Production of Glycopeptide Derivatives for Exploring Substrate Specificity of Human OGA Toward Sugar Moiety.” 2018, Frontiers in Chemistry, 6.

  40. Ma, J., Liu, H., Xi, Z., Hou, J., Li, Y., Niu, J., Liu, T., Bi, S., Wang, X., Wang, C. and Wang, J., Wang, P.G.. “Protected and de-protected platinum (IV) glycoconjugates with GLUT1 and OCT2-mediated selective cancer targeting: demonstrated enhanced transporter-mediated cytotoxic properties in vitro and in vivo.” 2018, Frontiers in Chemistry, 6.

  41. Yu, H., Santra, A., Li, Y., McArthur, J.B., Ghosh, T., Yang, X., Wang, P.G. and Chen, X., . “Streamlined chemoenzymatic total synthesis of prioritized ganglioside cancer antigens.” 2018Organic & Biomolecular Chemistry, 16(22), pp.4076-4080.

  42. Wang, J., Greenway, H., Li, S., Wei, M., Polizzi, S. J., & Wang, P. G.. “Facile and Stereo-Selective Synthesis of UDP-α-D-xylose and UDP-β-L-arabinose Using UDP-Sugar Pyrophosphorylase”. 2018,  Frontiers in Chemistry, May, Volume 6, Article 163.

  43.    Wang, N.; Yang, B.; Fu, C.; Zhu, H.; Zheng, F.; Kobayashi, T.;Liu, J.; Li,S.; Ma, C.; Wang, P. G.; Wang, Q.;Wang, L,; “Genetically Encoding Fluorosulphate-L-Tyrosine to React with Lysine, Histidine and Tyrosine via SuFEx in proteins in vivo”  2018,Journal of American Chemical Society140(15), 4995-4999.

  44.     Wang, S.; Zhang, Q.; Chen, C.; Guo, Y.; Gadi, M.R.; Yu, J.; Westerlind, U.; Liu,Y.; Cao, X.; Wang, P.  G.; Li, L.; “Facile Chemoenzymatic Synthesis of O-mannosyl glycans”  2018, Angewandte Chemie International Edition57(30), 9268-9273.

  45.   Wen, L.; Gadi, M. R.; Zheng, Y.; Gibbons, C.; Kondengaden, S.; Zhang, J.; Wang, P. G. “Chemoenzymatic Synthesis of Unnatural Nucleotide Sugars for Enzymatic Biorthogonal Labeling” ACS Catalysis2018, 8, 7659-7666.

  46. Yu, B.; Li, S.; Wang, J.; Zheng, Y.; Zhang, H.; Walker, M.-J.; Yuan, Z.; Zhu, H.; Zhang, J.; Wang, P. G.; Wang, B. “Biomarker-based Metabolic Labeling for Redirected and Enhanced Immune Response” ACSChemical Biology2018, 13(6), 1686-1694.

  47.     Li, J.; Li, S.; Li, Q.; Long, J.; Ma, C.; Guo, J.; Ding, Y.; Yan, C.; Li, L .;Wu, Z; Zhu, H.; Li, K.-K.; Wen, L; Zhang, Q.; Ivanov, I.; Luo, M.; Xi, R.; Long, H.; Wang, P. G.; Chen, Y. “Natural Product Micheliolide (MCL) Irreversibly Activates PKM2 and Suppresses Leukemia”  Journal of Medicinal Chemistry 2018, 61, 4155−4164.

  48. Purohit, S.; Li, T. -H.; Guan, W. -Y.; Song, X. -Z.; Song, J.; Tian, Y.’ Li, L.; Sharma, A.; Dun, B. -Y.; Mysona, D.; Ghamande, S.’ Rungruang, B.; Cummings, R. D.; Wang, P. G.; She, J. -X. “Multiplex glycan bead array for high throughput and high content analyses of glycan binding proteins”  Nature Communications 2018, 9, 258.

  49. Zhang, Q.; Ma, C.; Gearing, M.; Wang, P. G.; Chin, L.-S.; Li, L.  “Integrated proteomics and network analysis identifies protein hubs and network alterations in Alzheimer’s disease” Acta Neuropathological Communications2018,6:19.

  50.    Wen, L.; Liu, D.; Zheng, Y.; Huang, K.; Cao, X.; Song, J.; Wang, P. G.  “A one-step chemoenzymatic labeling Strategy for probing sialylated Thomsen-Friedenreich Antigen” ACS Central Science2018, 4(4),451-457.

  51.     Wen, F.; Li, L.; Zhao, N.; Chiang, M. J.; Xie, H.; Cooley, J.; Webby, R.; Wang, P. G.; Wan, X. F.  “AY161F Hemagglutinin Substitution Increases Thermostability and Improves Yields of 2009 H1N1 Influenza A Virus in Cells”.Journal of Virology2018, Jan 2;92(2).

  52.      Yang, B., Tang, S., Ma, C., Li, S.T., Shao, G.C., Dang, B., DeGrado, W.F., Dong, M.Q., Wang, P.G., Ding, S. and Wang, L. "Spontaneous and specific chemical cross-linking in live cells to capture and identify protein interactions." Nature Communications 2017, 2240.

  53.      Li, S., Wang, S., Fu, X., Liu, X.W., Wang, P. G.and Fang, J.  "Sequential one-pot multienzyme synthesis of hyaluronan and its derivative." Carbohydrate Polymers 2017, 221-227.

  54.     Aguilar, A. L., Hou, X., Wen, L., Wang, P. G. and Wu, P. "A Chemoenzymatic Histology Method for O-  GlcNAc Detection." ChemBioChem 2017, 2416-2421.

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  358. Luo, S.; Zhang, B.; Xian, M.; Janczuk, A.; Xie, W.; Cheng, J.-P.; Wang, P. G.“Recent progress in lanthanide-catalyzed organic reactions in protic media”. Chinese Science Bulletin 2001,46, 1673.

  359. Lue, J.-M.; Wittbrodt, J. M.; Wang, K.; Wen, Z.; Schlegel, H. B.; Wang, P. G.; Cheng, J.-P. “NO Affinities of S-nitrosothiols: A direct experimental and computational investigation of RS-NO bond dissociation energies”. Journal of American Chemical Society 2001,123, 2903.

  360. Guo, Z.; Xian, M.; Zhang, W.; McGill, A.; Wang, P. G.“N-Nitrosoanilines: a new class of caspase-3 inhibitors”. Bioorganic and Medicinal Chemistry 2001,9, 99.

  361. Xian, M.; Li, X.; Tang, X.; Chen, X.; Zheng, Z.; Galligan, J. J.; Kreulen, D. L.; Wang, P. G.“N-Hydroxyl derivatives of guanidine-based drugs as enzymatic NO donors”. Bioorganic and Medicinal Chemistry Letters 2001,11, 2377.

  362. Zhang, J.; Wu, B.; Liu, Z.; Kowal, P.; Chen, X.; Shao, J.; Wang, P. G.“Large-scale synthesis of carbohydrates for pharmaceutical development”. Current Organic Chemistry 2001,5, 1169.

  363. Wu, B.; Zhang, Y.; Wang, P. G.“Identification and characterization of GDP-D-mannose 4,6-dehydratase and GDP-L-fucose Synthetase in a GDP-L-fucose biosynthetic gene cluster fromHelicobacter pylori”. Biochemical and Biophysical Research Communications 2001285, 364.

  364. Wu, X.; Tang, X.; Xian, M.; Wang, P. G.“Glycosylated diazeniumdiolates: a novel class of enzyme-activated nitric oxide donors”. Tetrahedron Letters 2001,42, 3779.

  365. Chen, X.; Wen, Z.; Xian, M.; Wang, K.; Ramachandran, N.; Tang, X.; Schlegel, H. B.; Mutus, B.; Wang, P. G.“Fluorophore-labeled S-nitrosothiols”. Journal of Organic Chemistry 2001,66, 6064.

  366. Chen, Y.; Wang, P. G.“Facile oxidative cleavage of benzylidene acetals using molecular oxygen catalyzed by N-hydroxyphthalimide/Co(OAc)2”. Tetrahedron Letters 2001,42, 4955.

  367. Chen, Y.; Zhang, W.; Chen, X.; Wang, J.; Wang, P. G.“α-Gal-conjugated anti-rhinovirus agents: chemo-enzymatic syntheses and testing of anti-Gal binding”. Journal of the Chemical Society, Perkin Transactions 1 2001, 14, 1716.

  368. Shetterly, S.; Tom, I.; Yen, T.-Y.; Joshi, R.; Lee, L.; Wang, P. G.; Macher, B. A. “α-1,3-Galactosyltransferase: new sequences and characterization of conserved cysteine residues”. Glycobiology 2001,11, 645.

  369. Andreana, P. R.; Zhang, W.; Wang, P. G.“From a carbohydrate sequence to extensive research programs, the α-Gal epitope as a case study”.  In Glycochemistry: Principles, synthesis, and applications.Edited by P. G. Wang, and C. Bertozzi Marcel Dekker, Inc. New York, 2001, 581.

  370. Wang, K.; Wen, Z.; Zhang, W.; Xian, M.; Cheng, J.-P.; Wang, P. G.“Equilibrium and kinetic studies of transnitrosation between S-nitrosothiols and thiols”. Bioorganic and Medicinal Chemistry Letters2001, 11, 433.

  371.      Fang, J.; Chen, X.; Zhang, W.; Janczuk, A.; Wang, P. G.“Synthesis of α-Gal epitope analogs with a galaycosyltranferase-epimerase fusion enzyme”. Carbohydrate Research2000, 329, 873.

  372. Chen, X.; Zhang, W.; Wang, J.; Fang, J.; Wang, P. G.“Production of α-Galatosyl epitopes via combined use of two recombinant whole cells harboring UDP-galactose 4-epimerase and α-1,3-galactosyltransferase”. Biotechnology Progress2000, 16, 595.

  373. Zhang, W.; Wang, P. G.“Ytterbium(III) trifluoromethanesulfonate catalyzed electrophilic aromatic substitution with glyoxalate and lipase-mediated product resolution: A convenient route to optically active aromatic α-hydroxy esters”. Journal of Organic Chemistry 2000,65, 4732.

  374. Xian, M.; Wang, Q. M.; Chen, X.; Wang, K.; Wang, P. G.“S-nitrosothiols as novel, reversible inhibitors of human rhinovirus 3C protease”. Bioorganic and Medicinal Chemistry Letters2000, 10, 2097.

  375. McGill, A.; Zhang, W.; Wittbrodt, J. M.; Wang, J.; Schlegel, H. B.; Wang, P. G.“Para-substituted N-nitroso-N-oxybenzenamine ammonium salts: a new class of redox-sensitive nitric oxide releasing compounds”. Bioorganic and Medicinal Chemistry 2000,8, 405.

  376. Hou, Y.; Xie, W.; Janczuk, A. J.; Wang, P. G.“O-Alkylation of cupferron: Aiming at the design and synthesis of controlled nitric oxide releasing agents”. Journal of Organic Chemistry. 2000,65, 4333.

  377. Hou, Y.; Xie, W.; Ramachandran, N.; Mutus, B.; Janczuk, A. J.; Wang, P. G.“O-Alkylation chemistry of neocupferron”. Tetrahedron Letters 2000,41, 451.

  378. Wang, K.; Zhang, W.; Xian, M.; Hou, Y.; Chen, X.; Cheng, J.-P.; Wang, P. G.“New chemical and biological aspects of S-nitrosothiols”. Current Medicinal Chemistry 2000,7, 821.

  379. Hou, Y.; Chen, Y.; Amro, N. A.; Wadu-Mesthrige, K.; Andreana, P.; Liu, G.-Y.; Wang, P. G.“Nanomolar scale nitric oxide generation from self-assembled monolayer modified gold electrodes”. Chemical Communications 2000, 19, 1831.

  380. Chen, X.; Kowal, P.; Wang, P. G.“Large-scale enzymatic synthesis of oligosaccharides”. Current Opinion in Drug Discovery and Development20003, 756.

  381. Xian, M.; Wang, K.; Chen, X.; Hou, Y.; McGill, A.; Chen, X.; Zhou, B.; Zhang, Z.-Y.; Cheng, J.-P.; Wang, P. G.“Inhibition of protein tyrosine phosphatases by low-molecular-weight S-nitrosothiols and S-nitrosylated human serum albumin”. Biochemical and Biophysical Research Communications2000268, 310.

  382. Xian, M.; Chen, X.; Liu, Z.; Wang, K.; Wang, P. G.“Inhibition of papain by S-nitrosothiols. Formation of mixed disulfides”. Journal of Biological Chemistry 2000,275, 20467.

  383. Chen, X.; Liu, Z.; Wang, J.; Fang, J.; Fan, H.; Wang, P. G.“Changing the donor cofactor of bovine α-1,3-galactosyltransferase by fusion with UDP-galactose 4-epimerase. More efficient biocatalysis for synthesis of α-Gal epitopes”. Journal of Biological Chemistry 2000,275, 31594.

  384. Cantuaria, G.; Magalhaes, A.; Angioli, R.; Mendez, L.; Mirhashemi, R.; Wang, J.; Wang, P. G.; Penalver, M.; Averette, H.; Braunschweiger, Pa. “Antitumor activity of a novel glyco-nitric oxide conjugate in human ovarian cancer”. Cancer2000, 88, 381.

  385. Zhang, W.; Wang, J.; Li, J.; Yu, L.; Wang, P. G.“A Large-scale synthesis of an α-galactosyl trisaccharide epitope involved in the hyperacute rejection upon xenotransplantation”. Journal of Carbohydrate Chemistry1999, 18, 1009.

  386. Chen, X.; Kowal, P.; Hamad, S.; Fan, H.; Wang, P. G.“Cloning, expression and characterization of a UDP-galactose 4-epimerase from Escherichia coli”. Biotechnology Letters 1999,21, 1131.

  387. Chen, X.; Andreana, P.; Wang, P. G.“Carbohydrates in transplantation”. CurrentOpinion in Chemical Biology 19993, 650.

  388. Zhang, W.; Xie, W.; Fang, J.; Wang, P. G.“Ytterbium(III) trifluoromethanesulfonate catalyzed solid phase aza Diels-Alder reaction and subsequent facile adduct release”. Tetrahedron Letter 1999,40, 7929.

  389. Xie, W.; Fang, J.; Li, J.; Wang, P. G.“Aziridine synthesis in protic media by using lanthanide triflates as catalysts”. Tetrahedron Letters 1999,55, 12929.

  390. Wang, K.; Hou, Y.; Zhang, W.; Ksebati, M. B.; Xian, M.; Cheng, J.-P.; Wang, P. G.15N NMR and electronic properties of S-nitrosothiols”. Bioorganic and Medicinal Chemistry Letter 1999,9, 2897.

  391. Li, J.; Zacharek, S.; Chen, X.; Wang, J.; Zhang, W.; Janczuk, A.; Wang, P. G.“Bacteria targeted by human natural antibodies using α-gal conjugated receptor-specific glycopolymers”.Bioorganic and Medicinal Chemistry 19997, 1549.

  392. Wang, J.-Q.; Chen, X.; Zhang, W.; Zacharek, S.; Chen, Y.; Wang, P. G.“Enhanced inhibition of human anti-Gal antibody binding to mammalian cells by synthetic α-Gal epitope polymers”. Journal of American Chemical Society 1999,121, 8174.

  393. Xie, W.; Chen, D.; Fan, X.; Li, J.; Wang, P. G.; Cheng, H. N.; Nickol, R. G. “Lithium chloride as catalyst for the ring-opening polymerization of lactide in the presence of hydroxyl-containing compounds”. Journal of Polymer Science, Part A: Polymer Chemistry1999,37, 3486.

  394. Hou, Y.; Wang, J.; Andreana, P.; Cantauria, G.; Tarasia, S.; Sharp, L.; Braunschweiger, P. G.; Wang, P. G.“Targeting nitric oxide to cancer cells: Cytotoxicity studies of glyco-S-nitrosothiols”. Bioorganic and Medicinal Chemistry Letter 1999,9, 2255.

  395. Li, J.; Cheng, H. N.; Nickol, R. G.; Wang, P. G.“Enzymatic modification of hydroxyethylcellulose by transgalactosylation with β-galactosidases”. Carbohydrate Research 1999,316, 133.

  396. Chen, Y.; Heeg, M. J.; Braunschweiger, P. G.; Xie, W.; Wang, P. G.“A carbohydrate-linked cisplatin analogue having antitumor activity”. Angewandte Chemie International Edition199938, 1768.

  397. Wang, S.; Ramirez, J.; Chen, Y.; Wang, P. G.; Leblanc, R. M. “Surface chemistry, topography, and spectroscopy of a mixed monolayer of 10,12-pentacosadiynoic acid and its mannoside derivative at the air-water interface”. Langmuir 1999,15, 5623.

  398. Li, J.; Ksebati, M. B.; Zhang, W.; Guo, Z.; Wang, J.; Yu, L.; Fang, J.; Wang, P. G.“Conformational analysis of an α-galactosyl trisaccharide epitope involved in hyperacute rejection upon xenotransplantation”. Carbohydrate Research 1999,315, 76.

  399. Fang, J.; Chen, X.; Zhang, W.; Wang, J.; Andreana, P. R.; Wang, P. G.“A unique chemoenzymic synthesis of α-galactosyl epitope derivatives containing free amino groups: Efficient separation and further manipulation”.Journal of Organic Chemistry 199964, 4089.

  400. Xie, W.; Heeg, M. J.; Wang, P. G.“Formation and crystal structure of a polymeric La(H2salen) complex”. Inorganic Chemistry 1999,38, 2541.

  401. Xie, W.; Bloomfield, K. M.; Jin, Y.; Dolney, N. Y.; Wang, P. G.“Lanthanide triflates catalyzed reactions of imines with indole in protic media”. Synlett 1999, 4, 498.

  402. Li, J.; Xie, W.; Cheng, H. N.; Nickol, R. G.; Wang, P. G.“Polycaprolactone-modified hydroxyethyl cellulose films prepared by lipase-catalyzed ring-opening polymerization”. Macromolecules 1999,32, 2789.

  403. Xie, W.; Jin, Y.; Wang, P. G.“Lanthanide triflates as unique Lewis acids”. Chemtech 1999,29, 23.

  404. Li, J.; Robertson, D. E.; Short, J. M.; Wang, P. G.“Chemical and enzymic synthesis of glycoconjugates. 5. One-pot regioselective synthesis of bioactive galactobiosides using a CLONEZYME thermophilic glycosidase library”. Bioorganic and Medicinal Chemistry Letter 1999,9, 35.

  405. Guo, Z.; Miranda, N.; Wang, P. G.“Protein S-nitrosating agents”. Methods in Enzymology1999301, 249.

  406. Hou, Y.; Wang, J.-Q.; Ramirez, J.; Wang, P. G.“Glyco-S-nitrosothiols: sugar-SNAP, a new type of nitric oxide donor”. Methods in Enzymology 1999,301, 242.

  407. McGill, A. D.; Yang, Y.; Wang, J.; Echegoyen, L.; Wang, P. G.“Redox-sensitive nitric oxide donors: nitric oxide generation through electrolysis”. Methods in Enzymology 1999,301, 235.

  408. Hou, Y.; Wang, J.; Arias, F.; Echegoyen, L.; Wang, P. G.“Electrochemical studies of S-nitrosothiols”. Bioorganic and Medicinal Chemistry Letter 1998,8, 3065.

  409. Li, J.; Robertson, D. E.; Short, J. M.; Wang, P. G.“Chemical and enzymic synthesis of glycoconjugates, 4. Control of regioselectivity in high yielding synthesis of (β-D-fucopyranosyl)-O-D-xylopyranosyl disaccharides using a CLONEZYME thermophilic glycosidase”. Tetrahedron Letters 1998,39, 8963.

  410. Cheng, J.-P.; Xian, M.; Wang, K.; Zhu, X.; Yin, Z.; Wang, P. G.“Heterolytic and homolytic Y-NO bond energy scales of nitroso-containing compounds: Chemical origin of NO release and NO capture”. Journal of American Chemical Society 1998,120, 10266.

  411. Martin, J.; Jaramillo G, L. M.; Wang, P. G.“Efficient synthesis of α-aldopyranosyl cyanides via radical cyanation reactions”. Tetrahedron Letters 1998,39, 5927.

  412. Wang, J.-Q; Archer, C.; Li, J.; Bott, S. G.; Wang, P. G.“Thermophilic esterases/lipases as an effective tool for the resolution of nucleoside diastereoisomers: Convenient one-pot synthesis of α-L-taluronamide and β-D-alluronamide nucleosides”. Journal of Organic Chemistry 1998,63, 4850.

  413. Fang, J.; Li, J.; Chen, X.; Zhang, Y.; Wang, J.; Guo, Z.; Zhang, W.; Yu, L.; Brew, K.; Wang, P. G.“Highly efficient chemoenzymic synthesis of α-galactosyl epitopes with a recombinant α-1,3-galactosyltransferase”. Journal of American Chemical Society 1998,120, 6635.

  414. Guo, Z.; Ramirez, J.; Li, J.; Wang, P. G.“Peptidyl N-nitrosoanilines: A novel class of cysteine protease inactivators”. Journal of American Chemical Society 1998,120, 3726.

  415. Fang, J.; Xie, W.; Li, J.; Wang, P. G.“Chemical and enzymic synthesis of glycoconjugates 3: synthesis of lactosamine by thermophilic galactosidase catalyzed galactosylation on a multigram scale”. Tetrahedron Letters 1998,39, 919.

  416.       Guo, Z.; Wang, P. G.“Utilization of glycosyltransferases to change oligosaccharide structures”. Applied Biochemistry and Biotechnology199768, 1.

  417. Streitwieser, A.; Wang, P. G.; Bors, D. A. “Equilibrium acidities of some sulfones and sulfoxides in tetrahydrofuran”. Tetrahedron Letters1997, 53, 10103-38.

  418. Li, J.; Wang, P. G.“Chemical and enzymic synthesis of glycoconjugates 2. High yielding regioselective synthesis of N-acetyllactosamine by use of recombinant thermophilic glycosidases library”. Tetrahedron Letters 1997,38, 7967.

  419. Xie, W.; Li, J.; Chen, D.; Wang, P. G.“Ring-opening polymerization of β-butyrolactone by thermophilic lipases”. Macromolecules 1997,30, 6997.

  420. Yu, L.; Chen, D.; Li, J.; Wang, P. G.“Preparation, characterization, and synthetic uses of lanthanide(III) catalysts supported on ion exchange resins”. Journal of Organic Chemistry 1997,62, 3575.

  421. Wang, S.; Li, Y.; Shao, L.; Ramirez, J.; Wang, P. G.; Leblanc, R. M. “Excess free energies of interaction between 10,12-pentacosadiynoic acid (PDA) and its mannoside derivative (MPDA). A mixed-monolayer study”. Langmuir 1997,13, 1677.

  422. Yu, L.; Li, J.; Ramirez, J.; Chen, D.; Wang, P. G. “Synthesis of aza sugars via lanthanide-promoted aza diels-alder reactions in aqueous solution”. Journal of Organic Chemistry 1997,62, 903.

  423. Yu, L.; Chen, D.; Li, J.; Ramirez, J.; Wang, P. G.; Bott, S. G. “Lanthanide-promoted reactions of aldehydes and amine hydrochlorides in aqueous solution. Synthesis of 2,3-dihydropyridinium and pyridinium derivatives”. Journal of Organic Chemistry 1997,62, 208.

  424. Ramirez, J.; Yu, L.; Li, J.; Braunschweiger, P. G.; Wang, P. G.“Glyco-S-nitrosothiols, a novel class of NO donor compounds”. Bioorganic and Medicinal Chemistry Letter 1996,6, 2575.

  425. Hou, Y.; Guo, Z.; Li, J.; Wang, P. G.“Seleno compounds and glutathione peroxidase catalyzed decomposition of S-nitrosothiols”. Biochemical and Biophysical Research Communications1996228, 88.

  426. Chen, D.; Yu, L.; Wang, P. G.“Lewis acid-catalyzed reactions in protic media. Lanthanide-catalyzed reactions of indoles with aldehydes or ketones”. Tetrahedron Letters 1996,37, 4467.

  427. Stratakis, M.; Wang, P. G.; Streitwieser, A. “Equilibrium ion pair acidities of polyhalogenated benzenes in THF. Extrapolation to benzene”. Journal of Organic Chemistry 1996,61, 3145.

  428. Yu, L.; Chen, D.; Wang, P. G.“Aqueous aza Diels-Alder reactions catalyzed by lanthanide(III) trifluoromethanesulfonates”. Tetrahedron Letters 1996,37, 2169.

  429. Guo, Z.; McGill, A.; Yu, L.; Li, J.; Ramirez, J.; Wang, P. G.“S-Nitrosation of proteins by N-methyl-N-nitrosoanilines”. Bioorganic and Medicinal Chemistry Letter 1996,6, 573.

  430. Wartchow, C. A.; Wang, P. G.; Bednarski, M. D.; Callstrom, M. R. “Carbohydrate protease conjugates: Stabilized proteases for peptide synthesis”.Journal of Organic Chemistry 1995, 60, 2216.

  431. Yu, L.; McGill, A.; Ramirez, J.; Wang, P. G.; Zhang, Z.-Y. “Synthesis and bioassay of a protein tyrosine phosphatase inhibitor, dephostatin”.Bioorganic and Medicinal Chemistry Letter 1995,5, 1003.

  432. Yu, L.; Cabrera, R.; Ramirez, J.; Malinovskii, V. A.; Brew, K.; Wang, P. G.“Chemical and enzymic synthesis of glyconjugates. 1. Enzymic galactosylation of conduritol B”. Tetrahedron Letters 1995,36, 2897.

  433. Sears, P. S.; Schuster, M.; Wang, P. G.; Wong, C.-H. “Engineering Subtilisin for Peptide Coupling”. Journal of American Chemical Society1994, 116, 6521.

  434. Herrmann, G. F.; Wang, P. G.; Shen, G.-J.; Garcia-Junceda, E.; Khan, S. H.; Matta, K. L.; Wong, C.-H. “Large Scale Overexpression of Recombinant α-1,2-Mannosyltransferase in Escherichia Colifor the Study of Acceptor Specificity and Use of the Recombinant Whole Cells in Synthesis”. Journal of Organic Chemistry 1994, 5, 6356.

  435. Schuster, M.; Wang, P. G.; Paulson, J. C.; Wong, C.-H. “Solid phase enzymatic synthesis of glycopeptides and oligosaccharides”. Journal of American Chemical Society1994, 116, 1135.

  436. Herrmann, G. F.; Wang, P. G.; Shen, G.-J.; Wong, C.-H. “Recombinant whole cells as catalysts for the enzymatic synthesis of oligosaccharides and glycopeptides”. Angewandte Chemie International Edition England1994, 33, 1241.

  437. Wang, P. G.; Shen, G.-J.; Wang, Y. F.; Ichikawa, Y.; Wong, C.-H. “Enzymes in oligosaccharide synthesis: Active-domain overproduction, specificity study and synthetic use of an a1,2-mannosyltransferase with regeneration of GDP-Man”. Journal of Organic Chemistry1993, 58, 3985.

  438. Wong, C.-H.; Schuster, M.; Wang, P. G.; Sears, P. “Enzymatic synthesis of N- and O-linked glycopeptides”. Journal of American Chemical Society1993, 115, 5893.

  439. Wang, P. G.; Zhang, Y.; Glasser, R.; Streitwieser, A.; Schleyer, P. R. “Ab Initio calculations on phosphorus compounds. II. Effects of disubstitution on ligand apicophilicity in phosphoranes”. Journal of Computational Chemistry1993, 14, 522.

  440. Streitwieser, A.; Xie, L.; Wang, P. G.; Bachrach, S. M. “Ion pair carbon acidities of some silanes in tetrahydrofuran”. Journal of Organic Chemistry1993, 58, 1778.

  441. Wang, P. G.; Schuster, M.; Wang, Y. F.; Wong, C.-H. “Synthesis of phospholipid-inhibitor conjugates by enzymatic transphosphatidylation with phospholipase D”. Journal of American Chemical Society1993, 115, 10487.

  442. Nagy, J. O.; Wang, P. G.; Gilbert, J. H.; Schaefer, M. E.; Hill, T. G.; Callstrom, M. R.; Bednarski, M. D. “Carbohydrate materials bearing neuraminidase-resistant C-glycosides of sialic acid strongly inhibit the in vitro infectivity of influenza virus”. Journal of Medicinal Chemistry1992, 35, 4501.

  443. Wang, P. G.; Hill, T. G.; Wartchow, C. A.; Huston, M. E.; Oehler, L. M.; Smith, M. B.; Bednarski, M. D.; Callstrom, M. R. “The preparation of new carbohydrate-based materials for the stabilization of proteins”. Journal of American Chemical Society1992, 114, 378.

  444. Hill, T. G.; Wang, P. G.; Oehler, L. M.; Huston, M. E.; Wartchow, C. A.; Smith, M. B.; Bednarski, M. D.; Callstrom, M. R. “Carbohydrate protein conjugates (CPC): The design of new materials to stabilize enzymes”. Tetrahedron Letters 1991, 32, 6823.

  445. Wang, P. G.; Zhang, Y.; Glaser, R.; Reed, A. E.; Schleyer, P. R.; Streitwieser, A. “The effects of the first and second row substituents on the structures and energies of PH4X phosphoranes. An Ab initio study”. Journal of American Chemical Society1991, 113, 55.

  446. Wang, P. G.; Hill, T. G.; Bednarski, M. D.; Callstrom, M. R. “The catalytic formation of peptide bonds with carbohydrate protein conjugates of proteases [CPC(proteases)]”. Tetrahedron Letters 1991, 32, 6827.

  447. Wang, P. G.; Hill, T. G.; Bednarski, M. D.; Callstrom, M. R. “The use of carbohydrate protein conjugates of proteases [CPC(proteases)] for the catalytic formation of peptide bonds”. Materials Research Society Symposia Proceeding1991, 218, 23.

  448. Wang, P. G.; Agrafiotis, D. K.; Streitwieser, A.; Schleyer, P. R. “Berry and turnstyle processes in the pseudorotation of three phosphoranes”. Journal of Chemical Society, Chemical Communications1990, 0, 201.

  449. Rajca, A.; Wang, P. G.; Streitwieser, A.; Schleyer, P. R. “Unusual    structures of dilithiosilanes and disodiosilanes. Ionicity of the silicon-alkali-metal bond”.   Inorganic Chemistry1989, 28, 3064.

特邀学术报告 (2016 – 今):
在国际学术会议及科研院所共做特邀学术报告200余场。

2020/09  全国糖生物学会议,江苏无锡

2019/12  国际有机生物化学研讨会,广东深圳

2019/12  第一届多糖国际研讨会,广东珠海

2019/11  第十一届全国化学生物学学术会议,广东广州

2019/09  全国糖化学会议,河北保定

2019/06  戈登糖科学研究会议,香港,“合成糖组学和DNA编码的水合物库”

2019/05  全国糖生物工程会议,青岛,“Enable everyone to synthesize a few sugar sequences”

2019/04  美国化学学会年会,奥兰多,“高通量技术探索碳水化合物 - 蛋白质相互作用”

2019/01   伦敦帝国理工学院, “合成糖组学:一个新时代即将来临......”

2018/11  无锡制药有限公司中国 ,上海,“合成糖组学:从毫克到千克的化学酶法合成寡糖,多糖,糖脂,糖肽和糖蛋白”

2018/10  韦恩州立大学,底特律,“研究碳水化合物 - 蛋白质相互作用的化学方法”

2018/06  第十一届糖基转移国际研讨会,青岛,“糖基转移酶在化学和生物医学中的应用”

2018/04  2018年格鲁吉亚糖科学研讨会,“通过酶促合成获得糖精”

2018/03  美国化学学会年会,新奥尔良,“通过化学和酶促催化生产O-聚糖和O-糖肽/糖蛋白”

2017/11  中英糖科学网络会议

2017/11  美国糖生物学会会议,波特兰市

2017/08  美国化学学会年会,华盛顿特区

2017/07  Eurocarb2017, 巴塞罗那

2017/06  戈登糖科学会议

2017/06  第13届中国-美国化学与化学生物学教授会议, 中国南通

2017/05  中国河北医学院

2017/05  华中师范大学化学系

2017/05  第二届中国糖合成研讨会,济南,山东大学

2017/04  美国加利福尼亚大学化学系

2017/04  ACS春季会议,旧金山

2017/02  GlycoBioTech2017,柏林

2016/11  爱尔兰科学基金会,爱尔兰都柏林,柏林大学学院

2016/11  SFG年会,新奥尔良

2016/10  阿肯色州,阿肯色大学化学与生物化学系

2016/10  北京,北京大学化学生物系

2016/10  第八届亚洲糖类和糖类技术协会,无锡

2016/09  巴尔的摩市,马里兰大学化学与生物化学系

2016/09  第14届国际内毒素与先天免疫学会双年会,汉堡

2016/08  ACS年会,费城

2016/08  全国糖生物学会议,北京

2016/07  国际糖科学研讨会,新奥尔良

2016/06  第10届加拿大多伦多糖基转移酶国际研讨会

2016/06  微生物糖生物学会议,FASEB,斯科茨代尔

2016/05  南开大学药物化学生物学国家重点实验室

2016/04  ASMB年会,圣地亚哥

2016/04  东南大学会议,坦帕市,南佛罗里达大学

2016/04  休斯顿卫理公会研究所纳米医学系,休斯顿

2016/03  ACS年会,圣地亚哥

2016/03  Pittcon会议和博览会,亚特兰大

2016/02  佐治亚州立大学生物系,亚特兰大

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