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化学表观遗传学:化学和化学生物学技术对溴结构域靶标验证的影响。

Chemical Epigenetics: The Impact of Chemical and Chemical Biology Techniques on Bromodomain Target Validation.

机构信息

Department of Chemistry, Chemistry Research Laboratory, University of Oxford, Mansfield Road, Oxford, OX1 3TA, UK.

出版信息

Angew Chem Int Ed Engl. 2019 Dec 9;58(50):17930-17952. doi: 10.1002/anie.201812164. Epub 2019 Nov 14.

Abstract

Epigenetics is currently the focus of intense research interest across a broad range of disciplines due to its importance in a multitude of biological processes and disease states. Epigenetic functions result partly from modification of the nucleobases in DNA and RNA, and/or post-translational modifications of histone proteins. These modifications are dynamic, with cellular machinery identified to modulate and interpret the marks. Our focus is on bromodomains, which bind to acetylated lysine residues. Progress in the study of bromodomains, and the development of bromodomain ligands, has been rapid. These advances have been underpinned by many disciplines, but chemistry and chemical biology have undoubtedly played a significant role. Herein, we review the key chemistry and chemical biology approaches that have furthered our study of bromodomains, enabled the development of bromodomain ligands, and played a critical role in the validation of bromodomains as therapeutic targets.

摘要

表观遗传学目前是各个学科领域的研究热点,因为它在多种生物过程和疾病状态中都具有重要作用。表观遗传功能部分源于 DNA 和 RNA 中核碱基的修饰,以及组蛋白的翻译后修饰。这些修饰是动态的,细胞机制被鉴定出来以调节和解释这些标记。我们的重点是溴结构域,它可以结合乙酰化的赖氨酸残基。溴结构域的研究进展以及溴结构域配体的开发进展迅速。这些进展得到了许多学科的支持,但化学和化学生物学无疑发挥了重要作用。在此,我们回顾了促进我们对溴结构域研究、开发溴结构域配体以及在将溴结构域验证为治疗靶点方面发挥关键作用的关键化学和化学生物学方法。

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