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微小的变化成就 SIRT2 的不同:3-芳基巯基酰化赖氨酸衍生物的两种不同结合模式。

Small Changes Make the Difference for SIRT2: Two Different Binding Modes for 3-Arylmercapto-Acylated Lysine Derivatives.

机构信息

Department of Enzymology, Charles Tanford Protein Center, Institute of Biochemistry and Biotechnology, Martin-Luther-University Halle-Wittenberg, Halle/Saale 06120, Germany.

Department of Natural Product Biochemistry, Charles Tanford Protein Center, Institute of Biochemistry and Biotechnology, Martin-Luther-University Halle-Wittenberg, Halle/Saale 06120, Germany.

出版信息

Biochemistry. 2022 Sep 6;61(17):1705-1722. doi: 10.1021/acs.biochem.2c00211. Epub 2022 Aug 16.

Abstract

Sirtuins are protein deacylases regulating metabolism and stress responses and implicated in aging-related diseases. Modulators of the human sirtuins 1-7 are sought as chemical tools and potential therapeutics, for example, for treatment of cancer. We were able to show that 3-aryl-mercapto-succinylated- and 3-benzyl-mercapto-succinylated peptide derivatives yield selective Sirt5 inhibitors with low nM values. Here, we synthesized and characterized 3-aryl-mercapto-butyrylated peptide derivatives as effective and selective sirtuin 2 inhibitors with values in the low nanomolar range. According to kinetic measurements and microscale thermophoresis/surface plasmon resonance experiments, the respective inhibitors bind with the 3-aryl-mercapto moiety in the selectivity pocket of Sirtuin 2, inducing a rearrangement of the active site. In contrast, 3-aryl-mercapto-nonalyl or palmitoyl derivatives are characterized by a switch in the binding mode blocking both the hydrophobic channel by the fatty acyl chain and the nicotinamide pocket by the 3-aryl-mercapto moiety.

摘要

Sirtuins 是调节代谢和应激反应的蛋白去酰基酶,与衰老相关疾病有关。人类 Sirtuins 1-7 的调节剂被视为化学工具和潜在的治疗药物,例如用于治疗癌症。我们能够证明 3-芳基-巯基琥珀酰化和 3-苄基-巯基琥珀酰化肽衍生物是具有低纳摩尔值的选择性 Sirt5 抑制剂。在这里,我们合成并表征了 3-芳基-巯基丁酰化肽衍生物,它们是有效的和选择性的 Sirtuin 2 抑制剂, 值在低纳摩尔范围内。根据动力学测量和微尺度热泳动/表面等离子体共振实验,相应的抑制剂与 Sirtuin 2 的选择性口袋中的 3-芳基-巯基部分结合,诱导活性位点的重排。相比之下,3-芳基-巯基壬酰基或棕榈酰基衍生物的结合模式发生转变,阻止了通过脂肪酰链的疏水性通道和通过 3-芳基-巯基部分的烟酰胺口袋。

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