蘇紀勇,男,博士,現任東北師範大學生命科學學院教授。主要研究與糖類相互作用的蛋白質,包括半乳糖凝集素家族、C型凝集素、糖苷水解酶和糖苷轉移酶。
基本介紹
- 中文名:蘇紀勇
- 學位/學歷:博士
- 職業:教師
- 專業方向:糖類相互作用的蛋白質
- 任職院校:東北師範大學生命科學學院
個人經歷,研究方向,學術成果,
個人經歷
1999-2003 河北大學 生物技術專業 學士學位
2004-2007 南開大學 生物物理專業 碩士學位
2011-2013 德國馬克斯普朗克 遺傳與發育研究所 博士後
2014至今 東北師範大學 生物化學與分子生物學專業 副教授 博士生導師
研究方向
主要研究與糖類相互作用的蛋白質,包括半乳糖凝集素家族、C型凝集素、糖苷水解酶和糖苷轉移酶。嘗試使用結構生物學的方法闡明各種凝集素的生物功能,及糖苷水解酶和糖苷轉移酶的催化劑機制,同時還進行蛋白質與多糖相互作用的生化研究。
學術成果
發表文章
- Su J*, Schlicker C, Forchhammer K. A third metal is required for catalytic activity of the signal-transducing protein phosphatase M tPphA. J Biol Chem. 2011 Apr 15;286(15):13481-8.
- 2. Su J*, Forchhammer K. The Role of Arg13 in Protein Phosphatase M tPphA from Thermosynechococcus elongatus. Enzyme Res. 2012;2012:272706.
- 3. Su J*, Forchhammer K. Determinants for substrate specificity of the bacterial PP2C protein phosphatase tPphA from Thermosynechococcus elongatus. FEBS J. 2013 Jan;280(2):694-707.
- 4. Su J*, Zhang T, Wang P, Liu F, Tai G, Zhou Y*. The water network in Galectin-3 ligand binding site guides inhibitor design. Acta Biochim Biophys Sin (Shanghai). 2015 Mar;47(3):192-8.
- 5. Si Y, Yuan Y, Wang Y, Gao J, Hu Y, Feng S, Su J*. Structural and Biochemical Characterization of a Cyanobacterial PP2C Phosphatase Reveals Insights into Catalytic Mechanism and Substrate Recognition. Catalysts 2016
- 6. Si Y, Feng S, Gao J, Wang Y, Zhang Z, Meng Y, Zhou Y, Tai G, Su J*. Human Galectin-2 interacts with carbohydrates and peptides non-classically: New insight from X-ray crystallography and hemagglutination. Acta Biochim Biophys Sin (Shanghai). 2016 .
- 7. Si Y, Wang Y, Gao J, Song C, Feng S, Zhou Y, Tai G, Su, J*. Crystallization of Galectin-8 Linker Reveals Intricate Relationship between the N-terminal Tail and the Linker. Int. J. Mol. Sci. 2016, 17, 2088.
- 8. Su J*, Wang Y, Si Y, Gao J, Song C, Cui L, Wu R, Tai G, Zhou Y*. Galectin-13, a different prototype galectin, does not bind β-galacto-sides and forms dimers via intermolecular disulfide bridges between Cys-136 and Cys-138. Sci Rep. 2018 Jan 17;8(1):980.
- 9. Su J*, Gao J, Si Y, Cui L, Song C, Wang Y, Wu R, Tai G, Zhou Y*. Galectin-10: a new structural type of prototype galectin dimer and effects on saccharide ligand binding. Glycobiology. 2018 Mar 1;28(3):159-168.
- 10. Zhang T, Miller MC, Zheng Y, Zhang Z, Xue H, Zhao D, Su J*, Mayo KH, Zhou Y, Tai G*. Macromolecular assemblies of complex polysaccharides with galectin-3 and their synergistic effects on function. Biochem J. 2017 Nov 9;474(22):3849-3868.
- 11. Su J*, Song C, Si Y, Cui L, Yang T, Li Y, Wang H, Tai G, Zhou Y*. Identification of key amino acid residues determining ligand binding specificity, homodimerization and cellular distribution of human Galectin-10. Glycobiology. 2018 Sep 20.
- 12. Su J*. A brief history of Charcot-Leyden crystal protein/Galectin-10 research. Molecules. 2018 Nov 09.
- 13. Su J*, Cui L, Si Y, Song C, Li Y, Yang T, Wang H, Tai G, Zhou Y*. Resetting the ligand binding site of placental protein 13/galectin-13 recovers its ability to bind lactose. Bioscience Reports. 2018 Nov 08.
- 14. Si Y, Wang X, Yang G, Yang T, Li Y, Ayala GJ, Li X, Wang H, Su J*. Crystal Structures of Pyrophosphatase from Acinetobacter baumannii: Snapshots of Pyrophosphate Binding and Identification of a Phosphorylated Enzyme Intermediate. Int J Mol Sci. 2019 Sep 6;20(18).
- 15. Yang T, Yao Y, Wang X, Li Y, Si Y, Li X, Ayala GJ, Wang Y, Mayo KH, Tai G, Zhou Y*, Su J*. Galectin-13/placental protein 13: redox-active disulfides as switches for regulating structure, function and cellular distribution. Glycobiology. 2019 Oct 4.
- 16. 馮是瓊 司雲龍 宋晨陽 王佩琦 蘇紀勇*. 限制性酶切提高E.coli Hfq蛋白晶體結構解析度. 中國生物化學與分子生物學學報 2015 Vol. 31 (10): 1102-1108
- 17. Structure of Thermosynechococcus elongatus Sucrose Phosphate Synthase With UDP and Sucrose-6-Phosphate Provides Insight Into Its Mechanism of Action Involving an Oxocarbenium Ion and the Glycosidic Bond. Front. Microbiol. 11:1050. Li Y, Yao Y, Yang G, Tang J, Ayala GJ, Li X, Zhang W, Han Q, Yang T, Wang H, Mayo KH and Su J* (2020)
- 18. Structure-function studies of galectin-14, an important effector molecule in embryology. Si Y, Li Y, Yang T, Li X, Ayala GJ, Mayo KH, Tai G, Su J*, Zhou Y*. FEBS J. 2020 Jun 11.
