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Ge Shan
shange@ustc.edu.cn
English, Chinese
Anhui
University of Science and Technology of China
Basic Medical Sciences
  • 1995 - Bachelor's in Cell Biology: Lanzhou University
  • 1998 - Master's in Cell Biology: Shanghai Institute of Cell Biology, Chinese Academy of Sciences
  • 2004 - Ph.D. in Cell Biology: Georgia State University
  • Discovered new types of non-coding RNAs
  • Published multiple research papers in high-impact journals
  • Postdoctoral Research - Emory University
  • Postdoctoral Research - Yale University
  • 2010 - Present - Professor at University of Science and Technology of China
  • 2020: Anhui Provincial Science and Technology Award (First Prize in Natural Science)
  • 2016: Ministry of Science and Technology 'Young and Middle-aged Leading Talents in Scientific and Technological Innovation'
  • 2017: National Science Fund for Distinguished Young Scholars
  • 2018: National 'Ten Thousand Talents Program' Leading Talents in Scientific and Technological Innovation
Non-coding RNA regulation and function in animals and diseases
Transcription and post-transcriptional regulation in model organisms
Environmental regulation of gene expression in animals
  • Systematic identification and characterization of exon-intron circRNAs., Zhong Y, Yang Y, Wang X, Ren B, Wang X, Shan G, Chen L, 2024
  • A Mammalian Conserved Circular RNA CircLARP1B Regulates Hepatocellular Carcinoma Metastasis and Lipid Metabolism., Li J, Wang X, Shi L, Liu B, Sheng Z, Chang S, Cai X, Shan G, 2024
  • Emerging functions of mitochondria-encoded noncoding RNAs., Ren B, Guan MX, Zhou T, Cai X, Shan G, 2023
  • Systematic characterization of small RNAs associated with C. elegans Argonautes., Liu L, Wang X, Zhao W, Li Q, Li J, Chen H, Shan G, 2023
  • Exportin 4 depletion leads to nuclear accumulation of a subset of circular RNAs., Chen L, Wang Y, Lin J, Song Z, Wang Q, Zhao W, Wang Y, Xiu X, Deng Y, Li X, Li Q, Wang X, Li J, Liu X, Liu K, Zhou J, Li K, Liu Y, Liao S, Deng Q, Xu C, Sun Q, Wu S, Zhang K, Guan MX, Zhou T, Sun F, Cai X, Huang C, Shan G, 2022
  • Circular RNAs in physiology and non-immunological diseases., Chen L, Huang C, Shan G, 2022
  • CircURI1 interacts with hnRNPM to inhibit metastasis by modulating alternative splicing in gastric cancer., Wang X, Li J, Bian X, Wu C, Hua J, Chang S, Yu T, Li H, Li Y, Hu S, Shan G, Lin W, 2021
  • Circular RNAs from BOULE play conserved roles in protection against stress-induced fertility decline., Gao L, Chang S, Xia W, Wang X, Zhang C, Cheng L, Liu X, Chen L, Shi Q, Huang J, Xu EY, Shan G, 2020
  • Identification of mecciRNAs and their roles in the mitochondrial entry of proteins., Liu X, Wang X, Li J, Hu S, Deng Y, Yin H, Bao X, Zhang QC, Wang G, Wang B, Shi Q, Shan G, 2020
  • Systematic evaluation of C. elegans lincRNAs with CRISPR knockout mutants., Wei S, Chen H, Dzakah EE, Yu B, Wang X, Fu T, Li J, Liu L, Fang S, Liu W, Shan G, 2019
  • Convergent Transcriptional Programs Regulate cAMP Levels in C. elegans GABAergic Motor Neurons., Yu B, Wang X, Wei S, Fu T, Dzakah EE, Waqas A, Walthall WW, Shan G, 2017
  • Insertion of an Alu element in a lncRNA leads to primate-specific modulation of alternative splicing., Hu S, Wang X, Shan G, 2016
  • Exon-intron circular RNAs regulate transcription in the nucleus., Li Z, Huang C, Bao C, Chen L, Lin M, Wang X, Zhong G, Yu B, Hu W, Dai L, Zhu P, Chang Z, Wu Q, Zhao Y, Jia Y, Xu P, Liu H, Shan G, 2015
  • The isolation of an RNA aptamer targeting to p53 protein with single amino acid mutation., Chen L, Rashid F, Shah A, Awan HM, Wu M, Liu A, Wang J, Zhu T, Luo Z, Shan G, 2015
  • RNAi pathway participates in chromosome segregation in mammalian cells., Huang C, Wang X, Liu X, Cao S, Shan G, 2015
  • Escherichia coli noncoding RNAs can affect gene expression and physiology of Caenorhabditis elegans., Liu H, Wang X, Wang HD, Wu J, Ren J, Meng L, Wu Q, Dong H, Wu J, Kao TY, Ge Q, Wu ZX, Yuh CH, Shan G, 2012
  • Fragile X mental retardation protein regulates proliferation and differentiation of adult neural stem/progenitor cells., Luo Y, Shan G, Guo W, Smrt RD, Johnson EB, Li X, Pfeiffer RL, Szulwach KE, Duan R, Barkho BZ, Li W, Liu C, Jin P, Zhao X, 2010
  • A small molecule enhances RNA interference and promotes the biogenesis of microRNAs., Shan G, Li Y, Zhang J, Li W, Szulwach KE, Duan R, Faghihi MA, Khalil AM, Lu L, Paroo Z, Chan AW, Shi Z, Liu Q, Wahlestedt C, He C, Jin P, 2008
  • Copulation in Caenorhabditis elegans requires a Nuclear Hormone Receptor., Shan G, Walthall WW, 2008
  • Convergent genetic programs regulate similarities and differences between related motor neuron classes in Caenorhabditis elegans., Shan G, Kim K, Li C, Walthall WW, 2005
Non-Coding Rna Regulation Function Animals Diseases Transcription Post-Transcriptional Model Organisms Gene Expression Environment

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