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强效帕比司他(panobinostat)组蛋白去乙酰化酶抑制剂衍生物的设计:提高 HDAC2 和 HDAC8 之间同工酶选择性的分子考虑。

Design of Potent Panobinostat Histone Deacetylase Inhibitor Derivatives: Molecular Considerations for Enhanced Isozyme Selectivity between HDAC2 and HDAC8.

机构信息

Rhodes College, Department of Chemistry, 2000 North Parkway, Memphis, TN, 38112, USA.

St. Jude Children's Research Hospital, 262 Danny Thomas Place, Memphis, TN, 38105-3678, USA.

出版信息

Mol Inform. 2019 Mar;38(3):e1800080. doi: 10.1002/minf.201800080. Epub 2018 Oct 22.

Abstract

Histone Deacetylases (HDACs) are an important family of 18 isozymes, which are being pursued as drug targets for many types of disorders. HDAC2 and HDAC8 are two of the isozymes, which have been identified as drug targets for the design of anti-cancer, neurodegenerative, immunological, and anti-parasitic agents. Design of potent HDAC2 and HDAC8 inhibitors will be useful for the therapeutic advances in many disorders. This work was undertaken to develop potent HDAC2 and HDAC8 inhibitors. A docking study was performed comparing panobinostat derivatives in both HDAC2 and HDAC8. Six of our derivatives showed stronger binding to HDAC2 than panobinostat, and two of our derivatives showed stronger binding to HDAC8 than panobinostat. We evaluated the molecular features, which improved potency of our inhibitors over panobinostat and also identified another molecular consideration, which could be used to enhance histone deacetylase inhibitor (HDACi) selectivity towards either the HDAC2 or HDAC8 isozymes. The results of this work can be used to assist future design of more potent and selective HDACi for HDAC2 and HDAC8.

摘要

组蛋白去乙酰化酶(HDACs)是一个重要的 18 个同工酶家族,它们正被作为许多类型疾病的药物靶点进行研究。HDAC2 和 HDAC8 是两种同工酶,已被确定为设计抗癌、神经退行性、免疫和抗寄生虫药物的靶点。设计有效的 HDAC2 和 HDAC8 抑制剂将有助于许多疾病的治疗进展。这项工作旨在开发有效的 HDAC2 和 HDAC8 抑制剂。进行了一项对接研究,比较了 panobinostat 衍生物在 HDAC2 和 HDAC8 中的结合情况。我们的 6 种衍生物与 panobinostat 相比对 HDAC2 的结合更强,而我们的 2 种衍生物与 panobinostat 相比对 HDAC8 的结合更强。我们评估了提高抑制剂对 panobinostat 活性的分子特征,并且还确定了另一个分子考虑因素,可用于增强组蛋白去乙酰化酶抑制剂(HDACi)对 HDAC2 或 HDAC8 同工酶的选择性。这项工作的结果可用于辅助未来设计更有效和选择性的 HDAC2 和 HDAC8 的 HDACi。

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