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海洋微生物中的末端炔烃生物合成

Terminal Alkyne Biosynthesis in Marine Microbes.

作者信息

Zhu Xuejun, Zhang Wenjun

机构信息

University of California, Berkeley, CA, United States.

University of California, Berkeley, CA, United States; Chan Zuckerberg Biohub, San Francisco, CA, United States.

出版信息

Methods Enzymol. 2018;604:89-112. doi: 10.1016/bs.mie.2018.01.040. Epub 2018 Mar 12.

Abstract

The terminal alkyne is a readily derivatized functionality valued for its diverse applications in material synthesis, pharmaceutical science, and chemical biology. The synthetic biology routes to terminal alkynes are highly desired and yet underexplored. Some marine natural products contain a terminal alkyne functionality, and the discovery of the biosynthetic gene clusters for jamaicamide B and carmabin A marked the beginning of a new era in the understanding and engineering of terminal alkyne biosynthesis. In this chapter, we will overview recent advances in understanding the biosynthetic machinery for terminal alkyne synthesis. We will first describe how to elucidate terminal alkyne biosynthetic mechanism through heterologous expression, purification, and in vitro biochemical assays of individual pathway proteins. This will be followed by the description of an in vivo reporting system for the characterization of a membrane-bound bifunctional desaturase/acetylenase involved in terminal alkyne formation. The chapter will also cover the strategies for discovering additional protein homologs for terminal alkyne synthesis from microbes as well as the applications of click chemistry to identify and quantify terminal alkyne-bearing metabolites from microbial cultures. We will conclude this chapter with current challenges and future directions in this field.

摘要

末端炔烃是一种易于衍生化的官能团,因其在材料合成、药物科学和化学生物学中的多种应用而受到重视。人们非常希望有合成生物学途径来合成末端炔烃,但目前对此探索不足。一些海洋天然产物含有末端炔烃官能团,而牙买加酰胺B和卡马宾A生物合成基因簇的发现标志着末端炔烃生物合成的理解和工程化新时代的开始。在本章中,我们将概述在理解末端炔烃合成的生物合成机制方面的最新进展。我们将首先描述如何通过单个途径蛋白的异源表达、纯化和体外生化分析来阐明末端炔烃的生物合成机制。接下来将描述一种体内报告系统,用于表征参与末端炔烃形成的膜结合双功能去饱和酶/乙炔酶。本章还将介绍从微生物中发现用于末端炔烃合成的其他蛋白质同源物的策略,以及点击化学在鉴定和定量微生物培养物中含末端炔烃代谢物方面的应用。我们将以该领域当前的挑战和未来方向来结束本章。

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