摘要
Pictet-Spenglerase反应的异胡豆苷合成酶(STR)被描述为植物中约2000多种单萜吲哚类生物碱生物合成的中心酶。根据这些生物碱表现的较高治疗价值和巨大基本结构的多样性,近年来STR酶引起了广泛关注,有望应用于拥有奇异取代模式或甚至新颖骨架的新生物碱的形成。为了概括STR拥有的应用潜力及了解STR催化的作用机制,本文对探索STR实用性的方法和策略进行了总结,采用蛇根木STR(RS-STR)和长春花STR (CR-STR)为代表性模型,并介绍了拥有新底物的RS-STR最新合成的复杂结构。在此举的例子主要包括特异性底物催化合成、X-ray衍射晶体结构的比较、蛋白工程和生物合成途径程序,为最终酶-化学法构建新生物碱库奠定了基础。
关键词: 生物碱,应用策略,蛋白工程,异胡豆苷合成酶,底物,X-ray 衍射复杂结构
Current Medicinal Chemistry
Title:Using Strictosidine Synthase to Prepare Novel Alkaloids
Volume: 22 Issue: 15
Author(s): Huajian Zhu, Petra Kercmar, Fangrui Wu, Chitra Rajendran, Lianli Sun, Meitian Wang and Joachim Stockigt
Affiliation:
关键词: 生物碱,应用策略,蛋白工程,异胡豆苷合成酶,底物,X-ray 衍射复杂结构
摘要: The Pictet-Spenglerase strictosidine synthase (STR) has been characterized as the central enzyme in the biosynthesis of around 2000 monoterpenoid indole alkaloids in plants. In the light of a high therapeutic value and huge scaffold diversity these alkaloids represent, STR as an enzyme has attracted great attentions in recent years, intending to be utilized in the formation of new interesting alkaloids with unusual substitution pattern or even with novel scaffolds. For outlining the application potential that STR possesses, together with insight into the reaction mechanism catalyzed by STR, strategies and methods for exploring the applicability of STR have been updated in this article by taking R. serpentina STR (RS-STR) and C. roseus. STR (CR-STR) as representative models, followed by introducing the latest released complex structures of RS-STR with new substrates. Examples provided here, including substrate scaffold tailoring, X-ray crystal complex structure comparison, protein engineering and biosynthetic pathway reprogramming, pave the way to finally construct novel alkaloids libraries by chemo-enzymatic approaches.
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Huajian Zhu, Petra Kercmar, Fangrui Wu, Chitra Rajendran, Lianli Sun, Meitian Wang and Joachim Stockigt , Using Strictosidine Synthase to Prepare Novel Alkaloids, Current Medicinal Chemistry 2015; 22 (15) . https://dx.doi.org/10.2174/0929867322666150408110919
DOI https://dx.doi.org/10.2174/0929867322666150408110919 |
Print ISSN 0929-8673 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-533X |
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