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天然化学连接反应的扩展应用

Expanded utility of the native chemical ligation reaction.

作者信息

Yeo Dawn S Y, Srinivasan Rajavel, Chen Grace Y J, Yao Shao Q

机构信息

Department of Biological Sciences, National University of Singapore, 3 Science Drive 3, Singapore 117543, Singapore.

出版信息

Chemistry. 2004 Oct 4;10(19):4664-72. doi: 10.1002/chem.200400414.

Abstract

The post-genomic era heralds a multitude of challenges for chemists and biologists alike, with the study of protein functions at the heart of much research. The elucidation of protein structure, localization, stability, post-translational modifications, and protein interactions will steadily unveil the role of each protein and its associated biological function in the cell. The push to develop new technologies has necessitated the integration of various disciplines in science. Consequently, the role of chemistry has never been so profound in the study of biological processes. By combining the strengths of recombinant DNA technology, protein splicing, organic chemistry, and the chemoselective chemistry of native chemical ligation, various strategies have been successfully developed and applied to chemoselectively label proteins, both in vitro and in live cells, with biotin, fluorescent, and other small molecule probes. The site-specific incorporation of molecular entities with unique chemical functionalities in proteins has many potential applications in chemical and biological studies of proteins. In this article, we highlight recent progress of these strategies in several areas related to proteomics and chemical biology, namely, in vitro and in vivo protein biotinylation, protein microarray technologies for large-scale protein analysis, and live-cell bioimaging.

摘要

后基因组时代给化学家和生物学家都带来了诸多挑战,蛋白质功能研究是众多研究的核心。对蛋白质结构、定位、稳定性、翻译后修饰以及蛋白质相互作用的阐释将逐步揭示每种蛋白质及其在细胞中相关生物学功能所起的作用。开发新技术的需求促使科学领域各学科进行整合。因此,化学在生物过程研究中的作用从未如此重要。通过结合重组DNA技术、蛋白质剪接、有机化学以及天然化学连接的化学选择性化学的优势,已成功开发出各种策略,并应用于在体外和活细胞中用生物素、荧光和其他小分子探针化学选择性地标记蛋白质。在蛋白质中位点特异性地引入具有独特化学功能的分子实体在蛋白质的化学和生物学研究中有许多潜在应用。在本文中,我们重点介绍这些策略在蛋白质组学和化学生物学相关的几个领域,即体外和体内蛋白质生物素化、用于大规模蛋白质分析的蛋白质微阵列技术以及活细胞生物成像方面的最新进展。

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