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蛋白质 S 在心血管系统中的硫化氢巯基化。

Protein S-sulfhydration by hydrogen sulfide in cardiovascular system.

机构信息

Department of Pharmacology, School of Pharmacy, Nantong University, Nantong, China.

Key Laboratory of Cardiovascular and Cerebrovascular Medicine, School of Pharmacy, Nanjing Medical University, Nanjing, China.

出版信息

Br J Pharmacol. 2018 Apr;175(8):1146-1156. doi: 10.1111/bph.13825. Epub 2017 May 24.

Abstract

UNLABELLED

Hydrogen sulfide (H S), independently of any specific transporters, has a number of biological effects on the cardiovascular system. However, until now, the detailed mechanism of H S was not clear. Recently, a novel post-translational modification induced by H S, named S-sulfhydration, has been proposed. S-sulfhydration is the chemical modification of specific cysteine residues of target proteins by H S. There are several methods for detecting S-sulfhydration, such as the modified biotin switch assay, maleimide assay with fluorescent thiol modifying regents, tag-switch method and mass spectrometry. H S induces S-sulfhydration on enzymes or receptors (such as p66Shc, phospholamban, protein tyrosine phosphatase 1B, mitogen-activated extracellular signal-regulated kinase 1 and ATP synthase subunit α), transcription factors (such as specific protein-1, kelch-like ECH-associating protein 1, NF-κB and interferon regulatory factor-1), and ion channels (such as voltage-activated Ca channels, transient receptor potential channels and ATP-sensitive K channels) in the cardiovascular system. Although significant progress has been achieved in delineating the role of protein S-sulfhydration by H S in the cardiovascular system, more proteins with detailed cysteine sites of S-sulfhydration as well as physiological function need to be investigated in further studies. This review mainly summarizes the role and possible mechanism of S-sulfhydration in the cardiovascular system. The S-sulfhydrated proteins may be potential novel targets for therapeutic intervention and drug design in the cardiovascular system, which may accelerate the development and application of H S-related drugs in the future.

LINKED ARTICLES

This article is part of a themed section on Spotlight on Small Molecules in Cardiovascular Diseases. To view the other articles in this section visit http://onlinelibrary.wiley.com/doi/10.1111/bph.v175.8/issuetoc.

摘要

未加标签

硫化氢(H2S),独立于任何特定的转运体,对心血管系统具有多种生物学效应。然而,到目前为止,H2S 的详细机制尚不清楚。最近,提出了一种由 H2S 诱导的新型翻译后修饰,称为 S-巯基化。S-巯基化是 H2S 对靶蛋白特定半胱氨酸残基的化学修饰。有几种检测 S-巯基化的方法,如改良生物素开关测定法、带有荧光硫醇修饰试剂的马来酰亚胺测定法、标签转换法和质谱法。H2S 诱导酶或受体(如 p66Shc、磷酸化肌浆球蛋白结合蛋白、蛋白酪氨酸磷酸酶 1B、丝裂原活化细胞外信号调节激酶 1 和 ATP 合酶亚基α)、转录因子(如特异性蛋白 1、kelch 样 ECH 相关蛋白 1、NF-κB 和干扰素调节因子-1)和离子通道(如电压激活的 Ca 通道、瞬时受体电位通道和 ATP 敏感的 K 通道)中的 S-巯基化。尽管在阐明心血管系统中 H2S 引起的蛋白质 S-巯基化的作用方面已经取得了显著进展,但需要在进一步的研究中研究更多具有详细半胱氨酸 S-巯基化位点和生理功能的蛋白质。本综述主要总结了 S-巯基化在心血管系统中的作用及其可能的机制。S-巯基化蛋白可能是心血管系统治疗干预和药物设计的潜在新靶点,这可能加速未来与 H2S 相关的药物的开发和应用。

相关文章

本文是心血管疾病中小分子专题的一部分。要查看该部分的其他文章,请访问 http://onlinelibrary.wiley.com/doi/10.1111/bph.v175.8/issuetoc.

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