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S-甲基转移酶的详细综述:分类、结构、生物学功能及相关病理生理学和药物治疗学的研究进展。

Detailed resume of S-methyltransferases: Categories, structures, biological functions and research advancements in related pathophysiology and pharmacotherapy.

机构信息

Department of Drug Metabolism, Beijing Key Laboratory of Non-Clinical Drug Metabolism and PK/PD Study, State Key Laboratory of Bioactive Substance and Function of Natural Medicines, Institute of Materia Medica, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, PR China.

出版信息

Biochem Pharmacol. 2024 Aug;226:116361. doi: 10.1016/j.bcp.2024.116361. Epub 2024 Jun 12.

Abstract

Methylation is a vital chemical reaction in the metabolism of many drugs, neurotransmitters, hormones, and exogenous compounds. Among them, S-methylation plays a significant role in the biotransformation of sulfur-containing compounds, particularly chemicals with sulfhydryl groups. Currently, only three S-methyltransferases have been reported: thiopurine methyltransferase (TPMT), thiol methyltransferase (TMT), and thioether methyltransferase (TEMT). These enzymes are involved in various biological processes such as gene regulation, signal transduction, protein repair, tumor progression, and biosynthesis and degradation reactions in animals, plants, and microorganisms. Furthermore, they play pivotal roles in the metabolic pathways of essential drugs and contribute to the advancement of diseases such as tumors. This paper reviews the research progress on relevant structural features, metabolic mechanisms, inhibitor development, and influencing factors (gene polymorphism, S-adenosylmethionine level, race, sex, age, and disease) of S-methyltransferases. We hope that a better comprehension of S-methyltransferases will help to provide a reference for the development of novel strategies for related disorders and improve long-term efficacy.

摘要

甲基化是许多药物、神经递质、激素和外源性化合物代谢中的重要化学反应。其中,S-甲基化在含硫化合物的生物转化中起着重要作用,特别是具有巯基的化学物质。目前,仅报道了三种 S-甲基转移酶:硫嘌呤甲基转移酶(TPMT)、硫醇甲基转移酶(TMT)和硫醚甲基转移酶(TEMT)。这些酶参与各种生物过程,如基因调控、信号转导、蛋白质修复、肿瘤进展以及动物、植物和微生物中的生物合成和降解反应。此外,它们在必需药物的代谢途径中发挥关键作用,并促进肿瘤等疾病的发展。本文综述了 S-甲基转移酶的相关结构特征、代谢机制、抑制剂开发以及影响因素(基因多态性、S-腺苷甲硫氨酸水平、种族、性别、年龄和疾病)的研究进展。我们希望对 S-甲基转移酶有更好的理解,有助于为相关疾病的新型治疗策略提供参考,并提高长期疗效。

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