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南科大医学院
官方公众号

SU, MING-YUAN

Assistant Professor

sumy@sustech.edu.cn

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个人简介

Dr. Su, Ming-Yuan received her phD degree from National Taiwan University in 2015 and did her postdoc training in UC Berkeley and Lawrence Berkeley National Laboratory during 2016-2021. Since May 2021, she joined the School of Medicine, SUSTech as an assistant professor and doctoral supervisor. The lab aims to integrate the structural biology, biochemistry and molecular biology to understand the regulation mechanism of lysosomal signaling, and how the position and biogenesis of lysosomes are controlled as well as the relevant diseases.

 


研究领域

Regulation of lysosomal signaling, lysosomal trafficking and biosynthesis


教育背景

 2012-08- 2015-08   Ph.D,  Institute of Biochemical Sciences, National Taiwan University

 2010-08- 2012-07   M.S.,  Institute of Biochemical Sciences, National Taiwan University

 2005-08- 2009-07   B.S.,   Department of Chemistry, National Taiwan University


工作经历

2021-05-present  School of Medicine, Southern University of Science and Technology(SUStech), Assistant Professor

2016-08-2021-03  University of California, Berkeley/Lawrence Berkeley National Laboratory, Postdoc

2015-09-2016-07  Academia Sinica, Distinguished Postdoctoral Scholar


获奖情况及荣誉

2019-2021 AFTD Basic Science Postdoctoral Fellowship

2016 Distinguished Postdoctoral Scholar, Academia Sinica

2012-2014 Postgraduate Scholarship, Macau Government- Comissão Técnica de Atribuição de Bolsas para Estudos Pós-Graduados

2011, 2013 Outstanding Overseas Student Scholarship, National Taiwan University

2012 Dean’s Award, College of Life Sciences, National Taiwan University

2005-2009 College Scholarship, Macau Government- Direcção dos Serviços de Educação e Juventude

 


近年代表文章

  1. Ming Liu#, Yang Wang, Fei Teng, Xinyi Mai, Xi Wang,Ming-Yuan Su* & Goran Stjepanovic*(2023). Structure of the DDB1-AMBRA1 E3 ligase receptor complex linked to cell cycle regulation.  Nature Communications.

  2. Fei Teng#, Yang Wang#,Ming Liu, Shuyun Tian,Goran Stjepanovic*&Ming-Yuan Su*(2023). Cryo-EM structure of the KLHL22 E3 ligase bound to an oligomeric metabolic enzyme.Structure 31,1-10

  3. Su M-Y, Fromm SA, Remis J, Toso DB, Hurley JH. 2021. Structural basis for the ARF GAP activity and specificity of the C9orf72 complex. Nature Communications 12(1):3786.

  4. Su M-Y, Fromm SA, Zoncu R, Hurley JH. 2020. Structure of the C9orf72 Arf GAP complex haploinsufficient in ALS and FTD. Nature 585(7824):251-255.

  5. Turco E*, Witt M*, Abert C*, Bock-Bierbaum T*, Su M-Y*, Trapannone R, Sztacho M, Danieli A, Shi X, Zaffagnini G, GamperA, Schuschnig M, Fracchiolla D, Bernklau D, Romanov J, Hartl M, Hurley JH, Daumke O, Martens S. 2019. FIP200 Claw Domain Binding to p62 Promotes Autophagosome Formation at Ubiquitin Condensates. Mol Cell 74:330-346.e11. (*equal contribution)

  6. Turco E, Witt M, Abert C, Bock-Bierbaum T, Su M-Y, Trapannone R, Sztacho M, Danieli A, Shi X, Zaffagnini G, Gamper A, Schuschnig M, Fracchiolla D, Bernklau D, Romanov J, Hartl M, Hurley JH, Daumke O, Martens S. 2019. How RB1CC1/FIP200 claws its way to autophagic engulfment of SQSTM1/p62-ubiquitin condensates. Autophagy 15:1475–1477.

  7. Su M-Y, Morris KL, Kim DJ, Fu Y, Lawrence R, Stjepanovic G, Zoncu R, Hurley JH. 2017. Hybrid Structure of the RagA/CRagulator mTORC1 Activation Complex. Mol Cell 68:835-846.e3.

  8. Su M-Y, Som N, Wu C-Y, Su S-C, Kuo Y-T, Ke L-C, Ho M-R, Tzeng S-R, Teng C-H, Mengin-Lecreulx D, Reddy M, Chang C-I. 2017. Structural basis of adaptor-mediated protein degradation by the tail-specific PDZ-protease Prc. Nat Commun 8:1516.

  9. Lin C-C, Su S-C, Su M-Y, Liang P-H, Feng C-C, Wu S-H, Chang C-I. 2016. Structural Insights into the Allosteric Operation of the Lon AAA+ Protease. Structure 24:667–675.

  10. Su M-Y, Peng W-H, Ho M-R, Su S-C, Chang Y-C, Chen G-C, Chang C-I. 2015. Structure of yeast Ape1 and its role in autophagic vesicle formation. Autophagy 11:1580–1593.

  11. Chao S-W, Su M-Y, Chiou L-C, Chen L-C, Chang C-I, Huang W-J. 2015. Total Synthesis of Hispidulin and the Structural Basis for Its Inhibition of Proto-oncogene Kinase Pim-1. J Nat Prod 78:1969–1976. 

  12.  Su M-Y, Chang C-I, Chang C-F. 2013. 1H, 13C and 15N resonance assignments of the pyrin domain from human PYNOD. Biomol NMR Assign 7:141–143.

  13. Su M-Y, Kuo C-I, Chang C-F, Chang C-I. 2013. Three-dimensional structure of human NLRP10/PYNOD pyrin domain reveals a homotypic interaction site distinct from its mouse homologue. PLoS ONE 8:e67843.