论文著作:
(1)Gao, S#; Shi, L#; Wei, H#; Liu, P; Zhao, W; Gong, L; Tan, Z; Zhai, H; Liu, W*; Liu, H*; Zhu, L*; β-sheet Engineering of IsPETase for PET Depolymerization, Engineering. 2024.
(2)Wang, Q#; Cong, L#; Guo, J#; Wang, J; Han, X; Zhang, W; Liu, W*; Wei, H*; You, S*; Structure-Guided Engineering of a Short-Chain Dehydrogenase LfSDR1 for Efficient Biosynthesis of (R)-9-(2-Hydroxypropyl)adenine, the Key Intermediate of Tenofovir, Advanced Synthesis & Catalysis. 2024, 366:4786-4793.
(3)Li, T.#; Tang, Z.#; Wei, H.#; Tan, Z.; Liu, P.; Li, J.; Zheng, Y.; Lin, J.; Liu, W.; Jiang, H.; Liu, H*.; Zhu, L*.; Ma, Y*.; Totally atom-economical synthesis of lactic acid from formaldehyde: combined bio-carboligation and chemo-rearrangement without the isolation of intermediate, Green Chem. 2020, 22(9): 6809-6814.
(4)Tan, Z#; Tang, Z#; Wei, H; Zhang, R; Sun, L; Liu, W; Liu, H*; Zhu, L*; Ma, Y; Helix Zipper Regulating Formolase Activity, ACS Catal. 2025, 15(3):1586-1595.
(5)Zhang, T.#; Liu, P#; Wei, H; Sun, X.; Zeng, Y.; Zhang, X.; Cai, Y.; Cui, M.; Ma, H.; Liu, W.*; Sun, Y.*; Yang, J.*; Protein Engineering of Glucosylglycerol Phosphorylase Facilitating Efficient and Highly Regio- and Stereoselective Glycosylation of Polyols in a Synthetic System, ACS Catal. 2022, 12(24): 15715-15727.
(6)Janish, D.#; Liu, Y.; Wei, H.; Liu, W.; Ko, T.-P.; Guo, R.-T.; Eric, O.*; Structure, Function, and Inhibition of Staphylococcus aureus Heptaprenyl Diphosphate Synthase, ChemMedChem. 2016, 17(11): 1915-1923.
(7)Gerlis, V. H.; Han, X.; Lara, P.; Li, Q.; Wei, H.; Gao, J.; Karen, M.; Yufei, A.; Yannik, B.; Jan, M.; Christian, G. F.; Manfred, S. W.; David, B.; Gottfried, J. P.; Michael, L.; Michael, L.; Jiri, D.; Gert, W.; Liu, W; Uwe, T. B.; Wei, R.; Structural Insights into (Tere)phthalate-Ester Hydrolysis by a Carboxylesterase and Its Role in Promoting PET Depolymerization, ACS Catal. 2022, 12(24):15259-15270.
(8)Che, C#; Zhang, W#; Xu, X; Zheng, Z; Wei, H; Qin, B; Jia, X; Liu, W*; You, S*; Structure-based reshaping of a new ketoreductase from Sphingobacterium siyangense SY1 toward alpha-haloacetophenones, Int J Biol Macromol. 2024, 277:134157.
(9)Gao, X#; Zhang, W#; Wei, X; Zhao,L; Che, C; Zhang,Z; Wei, H; Qin, B; Liu, W*; Jia, X*; You, S*; Structure-guided engineering an (R)-transaminase from Mycobacterium neoaurum for efficient synthesis of chiral N-heterocyclic amines, Int J Biol Macromol. 2025, 287:138591.
(10)Lee, S. M. Y.; Yip, T. F.; Sheng, Y.; Jin, D.Yan.; Wei, H.; Guo, R.-T.; Peiris, J. S. M.; Recognition of Double-Stranded RNA and Regulation of Interferon Pathway by Toll-Like Receptor 10, Front. Immunol. 2018, 9: 0-516.
(11)Li, Z.; Zhao, Y.; Wu, P.; Wang, H.; Li, Q.; Gao, J; Qin, H.-M.; Wei, H.; Uwe. T. B.; Han, X.; Wei, R.; Liu, W.; Structural insight and engineering of a plastic degrading hydrolase Ple629, Biochem. Biophys. Res. Commun. 2022,626:100-106.
(12)Zheng, Y.; Liu, W.; Chen, C.-C.; Hu, X.; Liu, W.; Ko, T.-P.; Tang, X.; Wei, H.; Huang, J. -W.; Guo, R.-T.; Crystal Structure of a Mycoestrogen-Detoxifying Lactonase from Rhinocladiella mackenziei: Molecular Insight into ZHD Substrate Selectivity, ACS Catal. 2018,8(5):4294-4298.
发明专利:
[1] 韦泓丽,刘卫东,高健,韩旭,李倩,梁宵,陈阳阳,张洁,李金山,马延和。一种齐考诺肽(zinconotide)前体线性肽的原核表达系统及制备方法,申请号:202411691663.2。
[2] 刘卫东,徐娜娜,高健,闫明珠,梁宵,李倩,韩旭,韦泓丽,李金山,马延和。一种酰胺水解酶及其在降解赭曲霉素中的应用,申请号:202411670577.3。
[3] 刘卫东,徐娜娜,高健,闫明珠,梁宵,李倩,韩旭,韦泓丽,李金山,马延和一种降解赭曲霉素的产品及专用蛋白,申请号:202411670297.2。
[4] 梁宵,刘卫东,杜艺磊,张卓兵,高健,韩旭,李倩,韦泓丽,张结,陈阳阳,徐娜娜,李金山,马延和基于苯丙氨酸脱氢酶的比色生物传感系统用于检测赭曲霉素A,申请号:202411670578.8。
[5] 梁宵,刘卫东,张卓兵,杜艺磊,高健,韩旭,李倩,韦泓丽,张洁,陈阳阳,徐娜娜,李金山,马延和用于检测赭曲霉素A的双酶传感系统及其应用,申请号:202411670579.2。
[6] 刘卫东,高健,王浩,陈曦,梁宵,韩旭,韦泓丽,吴治庆,李金山,马延和。二烯醇内酯水解酶用于降解棒曲霉素的应用,申请号:202311804571.6。
[7] 刘卫东,韩旭,韦泓丽,李志帅,高健,郑芷然,张洁,顾群,李金山,马延和。一种嗜热菌来源的酯酶突变体及其应用,申请号:2023118172478。
[8] 刘卫东,李志帅,高健,韩旭,韦泓丽,李倩,李金山,马延和。高活性酯酶突变体及其应用, 申请号:202211273291.2。
[9] 刘卫东,高健,韩旭,韦泓丽,李倩,赵夷培,李金山,马延和。一种双烯内酯酶突变体及其应用,申请号:202211170945.9。
[10] 刘卫东,韩旭,高健,韦泓丽,李倩,武攀,李金山,马延和。羧酸酯酶突变体及其应用,申请号:202211163688.6。
[11] 刘卫东,高健,韩旭,李倩,韦泓丽,陈阳阳,李金山,马延和。一种脂肪酶突变体及其应用,申请号:202211163129.5。
[12] 韩旭,刘卫东,郑迎迎,高健,商娜,李倩,韦泓丽,黄建文,陈纯琪,郭瑞庭。高活性 PET 水解酶突变体及其应用,专利号:JL201911411678.8,授权时间:2021.9.7。