
性别:女
籍贯:辽宁省沈阳市
联系电话:
E-Mail:zhangwenhe306@163.com
个人主页:
职称/职务:讲师/专任教师
通讯地址:辽宁省本溪高新技术开发区华佗大街26号
邮政编码:110072
学习/工作经历:
教育经历:
2016.09–2021.12 沈阳药科大学 微生物与生化药学 博士
2019.04–2021.12 中国科学院上海有机化学研究所 联合培养
2012.09–2016.06 沈阳药科大学 药物制剂 学士
工作经历:
2022.03–至今 沈阳药科大学 微生物与细胞生物学教研室 专任教师
2023.09–2026.03 东京大学 博士后研究员
2024.04–2026.03 JSPS外国人特别研究员(JSPS Fellowship)
研究方向:
生物催化:开展生物催化剂开发与蛋白质工程改造,构建高效高选择性的催化体系,用于药物手性中间体的绿色合成。
生物合成:研究链霉菌及蓝藻来源的生物合成基因簇,解析相关功能酶及其催化机制。
兼职情况:
科研/获奖情况:
国家自然科学基金青年科学基金项目:“用于卤代芳杂环砌块合成的黄素依赖型卤化酶的挖掘与重塑”(82204219),项目负责人,已结题。
教学/指导研究生情况:
承担本科生《微生物学与免疫学》、《微生物学与免疫学实验》等课程。
发表论文/出版著作:
代表文章:
(#:共同第一作者)
1. Zhang, W. #, Ushimaru, R. #, Kanaida, M., & Abe, I. (2025). Pyrroline ring assembly via N-prenylation and oxidative carbocyclization during biosynthesis of aeruginosin derivatives. Journal of the American Chemical Society, 147(13), 10853-10858. (IF: 15.6)
2. Che, C. #, Zhang, W. #, Qiu, X., Wang, Q., Tang, L., Qin, B., Jia, X. & You, S. (2025). Engineered Bacterial Progesterone 5β-Reductase: Tunable Substrate Preference and Synthesis of 5β-Dihydrosteroids. ACS Catalysis, 15(19), 16560-16573. (IF: 13.1)
3. Jia, Y. #, Zhang, W. #, Wang, Q., Zhang, J., Wanchao, J., Li, J., ... & You, S. (2025). Engineering Tryptophan Halogenase RebH for Regioselective Halogenation of Phenolic Compounds. Organic Letters, 27(38), 10862-10867. (IF: 4.9)
4. Zhao, L. #, Zhang, W. #, Li, M., Liu, Q., Zhang, Z., Gao, X., ... & You, S. (2025). Reshaping the Substrate-Binding Pocket of Leucine Dehydrogenase for Efficient Synthesis of l-Phenylglycine and Its Substituted Derivatives. Journal of Agricultural and Food Chemistry, 73(26), 16515-16525. (IF: 6.2)
5. Zhang, W. #, Wang, F. #, Wang, Y. L., You, S., Pan, H. X., & Tang, G. L. (2021). Identification and characterization of enzymes catalyzing early steps in miharamycin and amipurimycin biosynthesis. Organic Letters, 23(22), 8761-8765. (IF: 4.9)
6. Wang, F., Zhang, W., Zhao, J., Kang, W. J., Wang, S., Yu, B., ... & Tang, G. L. (2020). Characterization of Miharamycin biosynthesis reveals a hybrid NRPS–PKS to synthesize high-carbon sugar from a complex nucleoside. Journal of the American Chemical Society, 142(13), 5996-6000. (IF: 15.6)
7. Qin, F., Qin, B., Zhang, W., Liu, Y., Su, X., Zhu, T., ... & You, S. (2018). Discovery of a switch between prelog and anti-prelog reduction toward halogen-substituted acetophenones in short-chain dehydrogenase/reductases. ACS Catalysis, 8(7), 6012-6020. (IF: 13.1)
其他: