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阐明结构决定因素,描绘在 Sirt1-3 的差异动力学和选择性抑制中起关键作用的残基。

Elucidation of Structural Determinants Delineates the Residues Playing Key Roles in Differential Dynamics and Selective Inhibition of Sirt1-3.

机构信息

Translational Health Science and Technology Institute (THSTI), Faridabad, Haryana 121001, India.

Delhi Institute of Pharmaceutical Sciences and Research, DPSRU, M.B. Road, Pushp Vihar, Sector 3, New Delhi 110017, India.

出版信息

J Chem Inf Model. 2021 Mar 22;61(3):1105-1124. doi: 10.1021/acs.jcim.0c01193. Epub 2021 Feb 19.

Abstract

Sirt1-3 are the most studied sirtuins, playing a key role in caloric-dependent epigenetic modifications. Since they are localized in distinct cellular compartments and act differently under various pathological conditions, selective inhibition would be a promising strategy to understand their biological function and to discover effective therapeutics. Here, sirtuin's inhibitor Ex527* is used as a probe to speculate the possible root cause of selective inhibition and differential structural dynamics of Sirt1-3. Comparative energetics and mutational studies revealed the criticality of residues I279 and I316 for the Sirt1 selectivity toward Ex527*. Furthermore, essential dynamics and residue network analysis revealed that the side-chain reorientation in residue F190 due to nonconserved residue Y191 played a major role in the formation of an extended selectivity pocket in Sirt2. These changes at the dynamical and residual level, which impact the internal wiring significantly, might help in rationally designing selective inhibitors against Sirt1-3.

摘要

Sirt1-3 是研究最多的沉默调节蛋白,在依赖热量的表观遗传修饰中发挥关键作用。由于它们定位于不同的细胞区室,并且在各种病理条件下作用不同,因此选择性抑制可能是理解其生物学功能和发现有效治疗方法的有前途的策略。在这里,沉默调节蛋白抑制剂 Ex527* 被用作探针,以推测 Sirt1-3 选择性抑制和结构动力学差异的可能根本原因。比较能学和突变研究表明,残基 I279 和 I316 对 Sirt1 对 Ex527* 的选择性至关重要。此外,基本动力学和残基网络分析表明,由于非保守残基 Y191,残基 F190 侧链的重排在 Sirt2 中形成扩展选择性口袋中起主要作用。这些在动力学和残基水平上的变化,显著影响内部布线,可能有助于合理设计针对 Sirt1-3 的选择性抑制剂。

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