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个人简介

教育背景 1996.09~1999.07 中国协和医科大学药物研究所,生药学专业博士 1993.09~1996.07 华中师范大学生命科学学院,植物学专业硕士 1987.09~1991.07 华中师范大学生物系,理学学士 工作经历 2007.09~现 在 中国医学科学院药物研究所,课题组长、研究员、博士生导师 2003.11~2007.08 中国医学科学院药物研究所,课题组长、副研究员、硕士生导师 2001.10~2003.10 日本新泻大学化学系,日本学术振兴会(JSPS)博士后 1999.07~2001.09 北京大学药学院,博士后 1991.07~1993.08 湖北省浠水师范学校,生物学教师

研究领域

1)天然药物生物合成 开展药用植物与微生物活性天然产物生物合成研究,揭示其生物合成途径,尤其对其生物合成途径中关键酶及其反应机制进行阐释,人工构建生物合成途径并高效生产目标活性天然产物及非天然天然产物,解决药源匮乏及成药性不足等关键问题。 2)天然药物生物催化 针对复杂结构活性天然产物结构优化中重要而化学法较难实现的选择性糖苷化、异戊烯基化、羟基化等反应,发掘新颖生物催化酶;采用结构生物学并结合定点突变等策略揭示催化机理及其杂泛性与选择性的结构基础,结构导向下对其进行理性设计,实现活性天然产物可设计性、高效结构优化,提升成药性。 3)特殊生境微生物中新颖结构活性天然产物的发现 从植物内生菌、海洋微生物等中发现新颖结构活性天然产物,为新药研制提供具自主知识产权的先导化合物,亦为新颖结构活性天然产物的生物合成研究及新颖酶的发现及酶学机制阐释奠定基础。

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

Lei Gao#, Cong Su#, Xiaoxia Du#, Ruishan Wang#, Shuming Chen, Yu Zhou, Chengwei Liu, Xiaojing Liu, Runze Tian, Liyun Zhang, Kebo Xie, She Chen, Qianqian Guo, Lanping Guo, Yoshio Hano, Manabu Shimazaki, Atsushi Minami, Hideaki Oikawa, Niu Huang, K. N. Houk, Luqi Huang*, Jungui Dai*, Xiaoguang Lei*. FAD-dependent enzyme-catalysed intermolecular [4+2] cycloaddition in natural product biosynthesis. Nature Chemistry, 2020, 12, 620–628. Ridao Chen#, Bingquan Gao#, Xiao Liu#, Feiying Ruan, Yong Zhang, Jizhong Lou, Keping Feng, Carsten Wunsch, Shu-Ming Li, Jungui Dai*, Fei Sun*. Molecular insights into the enzyme promiscuity of an aromatic prenyltransferase. Nature Chemical Biology, 2017, 13, 226-234. Dawei Chen#, Ridao Chen, Ruishan Wang, Jianhua Li, Kebo Xie, Chuancai Bian, Lili Sun, Xiaolin Zhang, Jimei Liu, Lin Yang, Fei Ye, Xiaoming Yu, Jungui Dai*. Probing the catalytic promiscuity of a regio- and stereo-specific C-glycosyltransferase from Mangifera indica. Angewandte Chemie International Edition, 2015, 54, 12678-12682. Dawei Chen#, Shuai Fan, Ridao Chen, Kebo Xie, Sen Yin, Lili Sun, Jimei Liu, Lin Yang, Jianqiang Kong, Zhaoyong Yang, Jungui Dai*. Probing and engineering key residues for bis-C-glycosylation and promiscuity of a C-glycosyltransferase. ACS Catalysis, 2018, 8, 4917-4927. Jimei Liu#, Xiaona Jia#, Jinlian Zhao#, Jiamin Feng, Minghua Chen, Ridao Chen, Kebo Xie, Dawei Chen, Yan Li, Dan Zhang, Ying Peng, Shuyi Si, Jungui Dai*. Bistachybotrysins L-V, bioactive phenylspirodrimane dimers from the fungus Stachybotrys chartarum. Organic Chemistry Frontiers, 2020, 7, 531–542. Cong Su#, Xiaoyu Tao, Xiaolin Zhang, Jinying Tian, Ridao Chen, Jimei Liu, Li Li, Fei Ye, Pei-cheng Zhang, Dewu Zhang*, Jungui Dai*. Morusalones A-D, Diels-Alder adducts with 6/7/6/6/6/6 hexacyclic ring systems as potential PTP1B inhibitors from cell cultures of Morus alba. Organic Letters, 2019, 21, 9463–9467. Yijun Fan#, Dewu Zhang#, Xiaoyu Tao, Yuanhao Wang, Jimei Liu, Li Li, Jianyuan Zhao, Liyan Yu, Yu-peng He, Jungui Dai*, Yefeng Tang*. Biosynthetic hypothesis-guided discovery and total syntheses of PKS–NRPS hybrid metabolites from endophytic fungus Periconia species. Organic Letters, 2019, 21, 1794-1798. Tian Yue#, Ridao Chen, Dawei Chen, Jimei Liu, Kebo Xie*, Jungui Dai*. Enzymatic synthesis of bioactive O-glucuronides using plant glucuronosyltransferases. Journal of Agricultural and Food Chemistry, 2019, 67, 6275-6284. Dawei Chen#, Ridao Chen, Kebo Xie, Tian Yue, Xiaolin Zhang, Fei Ye, Jungui Dai*. Biocatalytic C-glucosylation of coumarins using an engineered C-glycosyltransferase. Organic Letters, 2018, 20, 1634-1637. Jianhua Li#, Ridao Chen#, Ruishan Wang, Xiao Liu, Kebo Xie, Dawei Chen, Jungui Dai*. Biocatalytic access to diverse prenylflavonoids by combining a regiospecific C-prenyltransferase and a stereospecific chalcone isomerase. Acta Pharmaceutica Sinica B, 2018, 8, 678-686. Min Zhang#, Jimei Liu, Ridao Chen, Jinlian Zhao, Kebo Xie, Dawei Chen, Keping Feng, Jungui Dai*. Two furanharzianones with 4/7/5/6/5 ring system from microbial transformation of harzianone. Organic Letters, 2017, 19, 1168-1171. Kebo Xie#, Ridao Chen, Dawei Chen, Jianhua Li, Ruishan Wang, Lin Yang, Jungui Dai*. Enzymatic N-glycosylation of diverse arylamine aglycons by a promiscuous glycosyltransferase from Carthamus tinctorius. Advanced Synthesis & Catalysis, 2017, 359, 603-608. Dawei Chen#, Lili Sun, Ridao Chen, Kebo Xie, Lin Yang, Jungui Dai*. Enzymatic Synthesis of Acylphloroglucinol 3-C-glucosides from 2-O-glucosides Using a C-glycosyltransferase from Mangifera indica. Chemistry-A European Journal, 2016, 22, 5873-5877. Dewu Zhang#, Xiaoyu Tao, Ridao Chen, Jimei Liu, Li Li, Xiaomei Fang, Liyan Yu, Jungui Dai*. Pericoannosin A, a polyketide synthase–nonribosomal peptide synthetase hybrid metabolite with new carbon skeleton from the endophytic fungus Periconia sp. Organic Letters, 2015, 17, 4304-4307. Kebo Xie#, Ridao Chen, Jianhua Li, Ruishan Wang, Dawei Chen, Xiaoxiang Dou, Jungui Dai*. Exploring the catalytic promiscuity of a new glycosyltransferase from Carthamus tinctorius. Organic Letters, 2014, 16, 4874-4877. Dewu Zhang#, Hanlin Ge, Jian-hua Zou, Xiaoyu Tao, Ridao Chen, Jungui Dai*. Periconianone A, a new 6/6/6 carbocyclic sesquiterpenoid from endophytic fungus Periconia sp. with neural anti-inflammatory activity. Organic Letters, 2014, 16, 1410-1413. Ruishan Wang#, Ridao Chen, Jianhua Li, Xiao Liu, Kebo Xie, Dawei Chen, Yunze Yin, Xiaoyu Tao, Dan Xie, Jianhua Zou, Lin Yang, Jungui Dai*. Molecular characterization and phylogenetic analysis of two novel regio-specific flavonoid prenyltransferases from Morus alba and Cudrania tricuspidata. The Journal of Biological Chemistry, 2014, 289, 35815-35825. Dewu Zhang#, Hanlin Ge, Dan Xie, Ridao Chen, Jian-hua Zou, Xiaoyu Tao, Jungui Dai*. Periconiasins A–C, new cytotoxic cytochalasans with an unprecedented 9/6/5 tricyclic ring system from endophytic fungus Periconia sp. Organic Letters, 2013, 15, 1674−1677. Ridao Chen#, Xiao Liu, Jianhua Zou, Yunze Yin, Bin Ou, Jianhua Li, Ruishan Wang, Dan Xie, Peicheng Zhang, Jungui Dai*. Regio- and stereospecific prenylation of flavonoids by Sophora flavescens prenyltransferase. Advanced Synthesis & Catalysis, 2013, 355, 1817–1828. Xiao Liu#, Dan Xie, Ridao Chen, Mei Mei, Jianhua Zou, Xiaoguang Chen, Jungui Dai*. A Furantaxane with an unusual 6/8/6/5 ring system and potent tumor MDR reversal activity obtained via microbial transformation. Organic Letters, 2012, 14, 4106−4109.

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