论文著作:
1. Lin, NX., He, RZ., Yu Xiao-Wei*; Oxidative stress tolerance contributes to heterologous protein production in Pichia pastoris. Biotechnol Biofuels 2021,14, 160
2. Yan S, Xu Y, Yu Xiao-Wei*; Rational engineering of xylanase hyper-producing system in Trichoderma reesei for efficient biomass degradation. Biotechnol Biofuels. 2021,14:90.
3. Lin, NX., He, RZ., Yu Xiao-Wei*; Augmented peroxisomal ROS buffering capacity renders oxidative and thermal stress cross-tolerance in yeast. Microb Cell Fact 2021,20, 131.
4. Wang S , Xu Y , Yu Xiao-Wei*; Propeptide in Rhizopus chinensis Lipase: New Insights into Its Mechanism of Activity and Substrate Selectivity by Computational Design. Journal of Agricultural and Food Chemistry, 2021.
5. Wang Shang and Xu Yan, Yu Xiao-Wei*; A phenylalanine dynamic switch controls the interfacial activation of Rhizopus chinensis lipase. International Journal of Biological Macromolecules, 2021, 173 : 1-12.
6. Wang, S.; Xu, Y.; Yu Xiao-Wei*; Micro-Aqueous Organic System: A Neglected Model in Computational Lipase Design? Biomolecules, 2021, 11, 848.
7. Wenbin Jin, Yan Xu, Yu Xiao-Wei*; Preparation of lipase cross-linked enzyme aggregates in octyl-modified mesocellular foams. International Journal of Biological Macromolecules, 2019, 130, 342–347
8. Zhang Meng; Yu Xiao-Wei*; Xu Yan*; Guo Rey-Ting; G. V. T. Swapna; Thomas Szyperski; John F. Hunt; Gaetano T. Montelione*; Structural basis by which the N-terminal polypeptide segment of Rhizopus chinensis lipase regulates its substrate binding affinity, Biochemistry, 2019, 58: 3943-3954.
9. Mo Hong-Mei; Xu Yan; Yu Xiao-Wei*; Improved soluble expression and catalytic activity of a thermostable esterase using a high-throughput screening system based on a split-GFP assembly, Journal of Agricultural and Food Chemistry, 2018, 66: 12756-12764.
10. Yu Xiao-Wei*; Yang Min; Jiang Chuanhuan; Zhang Xiaofeng; Xu Yan*; N‑Glycosylation engineering to improve the constitutive expression of Rhizopus oryzae lipase in Komagataella phaffii, Journal of Agricultural and Food Chemistry, 2017, 65: 6009-6015.
11. Meng Zhang, Yu Xiao-Wei*, Yan Xu*, Paula Jouhten, G. V. T. Swapna, Ralf W. Glaser, John F Hunt, Gaetano T. Montelione, Hannu Maaheimo and Thomas Szyperski. 13C metabolic flux profiling of Pichia pastoris grown in aerobic batch cultures on glucose revealed high relative anabolic use of TCA cycle and limited incorporation of provided precursors of branched-chain amino acids. The FEBS Journal. 2017, 284:3100-3113
12. Yu Xiao-Wei*; Zhu Shan-Shan; Xiao Rong; Xu Yan*; Conversion of a Rhizopus chinensis lipase into an esterase by lid swapping, Journal of Lipid Research, 2014, 55(6): 1044-1051.
13. Yu Xiao-Wei*; Xu Yan*; Xiao Rong; Lipases from the genus Rhizopus: Characteristics, expression, protein engineering and application, Progress in Lipid Research, 2016, 64: 57-68.
14. Meng Zhang, Yu Xiao-Wei*, G. V. T. Swapna, Rong Xiao, Haiyan Zheng, Chong Sha, Yan Xu*, Gaetano T. Montelione. Efficient production of 2H, 13C, 15N-enriched industrial enzyme Rhizopus chinensis lipase with native disulfide bonds. Microbial Cell Factories 2016,15:123
15. Min Yang, Yu Xiao-Wei*, H Y Zheng, C Sha, et al. Role of N-linked glycosylation in the secretion and enzymatic properties of Rhizopus chinensis lipase expressed in Pichia pastoris. Microbial Cell Factories, 2015,14:40-54.
16. Yu Xiao-Wei*, Chong Sha, Yong-Liang Guo, Rong Xiao, Yan Xu*, High-level expression and characterization of a chimeric lipase from Rhizopus oryzae for biodiesel production, Biotechnology for Biofuels 2013,6:29
17. Yu Xiao-Wei*, Rui Wang, Yan Xu*, Rong Xiao and Meng Zhang, Enhanced thermostability of a Rhizopus chinensis lipase by in vivo recombination in Pichia pastoris. Microbial Cell Factories 2012,11:102-112
发明专利:
1. Xu Yan; Yu Xiao-Wei; Biofunctional lipase mutant and methods of using same, 2018-2-13, 美国, US9890367B2.
2. 喻晓蔚; 徐岩; 一种最适pH在酸性范围的磷脂酶A2及其应用, 2017-12-29, 中国, ZL201410504995.5.
3. 喻晓蔚; 徐岩; 基于二硫键强化折叠的热稳定性脂肪酶突变体及其构建方法和应用, 2013-10-16, 中国, ZL201210327367.5.
4. 喻晓蔚; 徐岩; 一种高分泌型耐热酵母基因工程菌及其应用, 2019-9-3, 中国, ZL2016103563746.
5. 喻晓蔚; 徐岩; 糖基化改造提高脂肪酶表达的方法、突变酶及其应用, 2017-7-14, 中国, ZL201510195799.9.