Li Shan
lishan@mail.hzau.edu.cn
Chinese, English
Hubei
Huazhong Agricultural University
College of Biomedical and Health
  • 09/2007-06/2013 PhD in Biochemistry and Molecular Biology: Beijing Institute of Life Sciences
  • 09/2003-07/2007 Bachelor's in Business Administration (Biotechnology Enterprise Management): China Agricultural University
  • 09/2003-07/2007 Bachelor's in Biological Sciences: China Agricultural University
  • Discovered and named two novel protein post-translational modifications: Arginine-GlcNAcylation and ADPR-Deacylization
  • 03/2017-present - Huazhong Agricultural University - Professor, Doctoral Supervisor
  • 01/2014-02/2017 - Taihe Hospital, Shiyan, Hubei - Director of Institute of Infectious and Immunological Diseases, Director of Central Laboratory
  • 07/2013-03/2015 - Beijing Institute of Life Sciences - Postdoctoral Researcher
  • 05/2022-present - Huazhong Agricultural University - Deputy Director of Major Project Management Office
  • 09/2019-present - Huazhong Agricultural University - Secretary General of the Scientific Ethics Committee
  • 05/2018-present - Huazhong Agricultural University - Vice Chairman of the Youth Federation
  • 2020: Hubei Province First Hundred Outstanding Female Scientific and Technological Innovation Talents
  • 2016: Third Prize in Hubei Province Natural Science Excellent Academic Papers
  • 2013: Wu Rui Life Science Award
  • 2015: Hubei Provincial Health Commission Outstanding Young Talent Project Recipient
  • 2015: Hubei Province Outstanding Youth Project Recipient
Molecular mechanisms of pathogen-host interactions
Development of human immune disease treatment methods based on bacterial proteins
Nutritional health regulation mechanism of 'dietary improvement-gut microecology-immunity'
  • Pathogen Hijacks Programmed Cell Death Signaling by Arginine ADPR-Deacylization of Caspases, Peng T, Tao X, Xia Z, Hu S, Xue J, Zhu Q, Pan X, Zhang Q, Li S, 2022
  • Structural and Functional Insights into Host Death Domains Inactivation by the Bacterial Arginine GlcNAcyltransferase Effector, Ding J, Yao Q, Li L, Dong N, Li S, Shao F, 2019
  • Structural insights into caspase ADPR-deacylization catalyzed by a bacterial effector and host calmodulin, Zhang K, Peng T, Tao X, Tian M, Li Y, Wang Z, Ma S, Hu S, Pan X, Xue J, Fu Y, Li S, 2022
  • Arginine Glcnacylation and Activity Regulation of Phop by a Type Iii Secretion System Effector in Salmonella, Xue J, Huang Y, Zhang H, Hu J, Pan X, Peng T, Lv J, Meng K, Li S, 2022
  • Arginine GlcNAcylation of Rab small GTPases by the pathogen Salmonella Typhimurium, Meng K, Zhang X, Peng T, Yang J, Liu X, Shao F, Li S, 2020
  • Detection of SARS-CoV-2 RNA residue on object surfaces in nucleic acid testing laboratory using droplet digital PCR, Lv J, Yang J, Xue J, Li S, 2020
  • Investigation of potential safety hazards during medical waste disposal in SARS-CoV-2 testing laboratory, Lv J, Yang J, Xue J, Zhu P, Liu L, Li S, 2021
  • Auto arginine-GlcNAcylation is crucial for bacterial pathogens in regulating host cell death, Xue J, Pan X, Peng T, Duan M, Du L, Zhuang X, Cai X, Yi X, Fu Y, Li S, 2020
  • Bacteria-catalyzed arginine glycosylation in pathogens and host, Pan X, Luo J, Li S, 2020
  • Arg-GlcNAcylation of TRADD by NleB and SseK1 is crucial for bacterial pathogenesis, Xue J, Hu S, Huang Y, Yi X, Zhang Q, Li S, 2020
  • Hijacking of death receptor signaling by bacterial pathogen effectors, Luo J, Hu J, Zhang Y, Hu Q, Li S, 2015
  • Sweet talk: protein glycosylation in bacterial interaction with the host, Lu Q, Li S, and Shao F, 2015
  • Pathogen blocks host death receptor signaling by arginine GlcNAcylation of death domains, Li S, Zhang L, Yao Q, Li L, Dong N, Rong J, Gao W, Ding X, Sun L, Chen X, Chen S, Shao F, 2013
  • Synthesis and Specific Antibody generation of Glycopeptides with ArginineN-GlcNAcylation, Pan M, Li S, Li X, Shao F, Liu L, and Hu H, 2014
  • An iron-containing dodecameric heptosyltransferase family modifies bacterial autotransporters in pathogenesis, Lu Q, Yao Q, Xu Y, Li L, Li S, Liu Y, Gao W, Niu M, Sharon M, Ben-Nissan G, Zamyatina A, Liu X, Chen S, Shao F, 2014
  • Total Synthesis of the G2/M DNA Damage Checkpoint Inhibitor Psilostachyin C, Li C, Tu S, Wen S, Li S, Chang J, Shao F, Lei X, 2011
  • Glutamine deamidation and dysfunction of ubiquitin/NEDD8 induced by a bacterial effector family, Cui J, Yao Q, Li S, Ding X, Lu Q, Mao H, Liu L, Zheng N, Chen S, Shao F, 2010
  • Chemical probing reveals insights into the signaling mechanism of inflammasome activation, Gong YN, Wang X, Wang J, Yang Z, Li S, Yang J, Liu L, Lei X, Shao F, 2010
  • A Legionella type IV effector activates the NF-κB pathway by phosphorylating the IκB family of inhibitors, Ge J, Xu H, Li T, Zhou Y, Zhang Z, Li S, Liu L, Shao F, 2009
  • Novel microRNAs uncovered by deep sequencing of small RNA transcriptomes in bread wheat (Triticum aestivum L.) and Brachypodium distachyon (L.) Beauv, Wei B, Cai T, Zhang R, Li A, Huo N, Li S, Gu YQ, Vogel J, Jia J, Qi Y, Mao L, 2009
  • Sorting of small RNAs into Arabidopsis Argonaute complexes is directed by the 5’ terminal nucleotide, Mi S, Cai T, Hu Y, Chen Y, Hodges E, Ni F, Wu L, Li S, Zhou H, Long C, Chen S, Hannon G, Qi Y, 2008
  • A complex system of small RNAs in the unicellular green alga Chlamydomonas reinhardtii, Zhao T, Li G, Mi S, Li S, Hannon G, Wang XJ, Qi Y, 2007
Pathogen Host Interaction Molecular Mechanism Bacterial Protein Immune Disease Treatment

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