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大环天然产物的化学编辑与动力学分析揭示了具有皮摩尔亲和力的缓慢、紧密结合的组蛋白脱乙酰酶抑制剂。

Chemical Editing of Macrocyclic Natural Products and Kinetic Profiling Reveal Slow, Tight-Binding Histone Deacetylase Inhibitors with Picomolar Affinities.

作者信息

Kitir Betül, Maolanon Alex R, Ohm Ragnhild G, Colaço Ana R, Fristrup Peter, Madsen Andreas S, Olsen Christian A

机构信息

Center for Biopharmaceuticals and Department for Drug Design and Pharmacology, Faculty of Health and Medical Sciences, University of Copenhagen , DK-2100 Copenhagen, Denmark.

Department of Chemistry, Technical University of Denmark , DK-2800 Kongens Lyngby, Denmark.

出版信息

Biochemistry. 2017 Sep 26;56(38):5134-5146. doi: 10.1021/acs.biochem.7b00725. Epub 2017 Sep 15.

Abstract

Histone deacetylases (HDACs) are validated targets for treatment of certain cancer types and play numerous regulatory roles in biology, ranging from epigenetics to metabolism. Small molecules are highly important as tool compounds for probing these mechanisms as well as for the development of new medicines. Therefore, detailed mechanistic information and precise characterization of the chemical probes used to investigate the effects of HDAC enzymes are vital. We interrogated Nature's arsenal of macrocyclic nonribosomal peptide HDAC inhibitors by chemical synthesis and evaluation of more than 30 natural products and analogues. This furnished surprising trends in binding affinities for the various macrocycles, which were then exploited for the design of highly potent class I and IIb HDAC inhibitors. Furthermore, thorough kinetic investigation revealed unexpected inhibitory mechanisms of important tool compounds as well as the approved drug Istodax (romidepsin). This work provides novel inhibitors with varying potencies, selectivity profiles, and mechanisms of inhibition and, importantly, affords insight into known tool compounds that will improve the interpretation of their effects in biology and medicine.

摘要

组蛋白去乙酰化酶(HDACs)是治疗某些癌症类型的已验证靶点,并且在生物学中发挥着众多调节作用,从表观遗传学到新陈代谢。小分子作为用于探究这些机制以及开发新药的工具化合物非常重要。因此,用于研究HDAC酶作用的化学探针的详细机制信息和精确表征至关重要。我们通过化学合成以及对30多种天然产物和类似物的评估,探究了自然界中的大环非核糖体肽HDAC抑制剂库。这揭示了各种大环化合物在结合亲和力方面令人惊讶的趋势,随后这些趋势被用于设计高效的I类和IIb类HDAC抑制剂。此外,深入的动力学研究揭示了重要工具化合物以及已获批药物Istodax(罗米地辛)意想不到的抑制机制。这项工作提供了具有不同效力、选择性概况和抑制机制的新型抑制剂,重要的是,深入了解了已知的工具化合物,这将改善对它们在生物学和医学中作用的解释。

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