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m^(6)A甲基化修饰在重度抑郁症中的作用

The Role of m^(6)A Methylation Modification in Major Depressive Disorder
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摘要 N^(6)-甲基腺苷(N^(6)-methyladenosine,m^(6)A)是真核生物RNA中常见且可逆的mRNA修饰,属于表观遗传学修饰之一。在甲基转移酶、去甲基化酶及阅读蛋白的调控下,m^(6)A修饰通过介导RNA转录、剪接、翻译等过程来影响相关蛋白质的表达,调控机体的生理生化过程。重度抑郁症(major depressive disorder,MDD)作为一种发病率高,治愈率低且极易复发的精神类疾病,其致病因素诸多,如遗传因素、环境因素和表观遗传学因素等,但其发病具体机制尚不清楚。近期研究发现m^(6)A修饰与MDD发病之间存在密切关系,并逐渐成为研究MDD发病机制的热点。本文通过对m^(6)A甲基化修饰过程及相关酶类在MDD患者中枢神经系统的表达及作用进行综述,以期为重度抑郁症的研究和治疗提供新的思路及药物靶点。 N^(6)-methyladenosine(m^(6)A),which belongs to the field of the epigenetic modifications,is a common and reversible mRNA modification in eukaryotic RNA.Regulated by methyltransferases,demethyltransferases,and reader proteins,m^(6)A modification affects the expression of relevant proteins by mediating RNA transcription,splicing,translation,and other processes,thereby regulating the physiological and biochemical processes of the organism.Major depressive disorder(MDD),characterized by a high incidence,low cure rate,and a high recurrence rate,is a psychiatric disorder with multiple etiological factors,including genetic factors,environmental factors and epigenetic factors.However,the specific mechanisms underlying MDD remain unclear.Recent studies have found a close relationship between m^(6)A modification and the pathogenesis of MDD,making it a hot topic in MDD research.This article reviews the m^(6)A methylation,as well as the expression and roles of related enzymes in the central nervous system of MDD patients,aiming to provide new insights and potential drug targets for the research and treatment of MDD.
作者 曲智 段东晓 QU Zhi;DUAN Dong-Xiao(Department of Physiology and Neurobiology,School of Basic Medical Sciences,Zhengzhou University,Zhengzhou 450001,China)
出处 《生理科学进展》 CAS 北大核心 2024年第2期185-190,共6页 Progress in Physiological Sciences
基金 河南省科技攻关项目(192102310084,222102310143) 郑州大学2022年度大学生创新创业训练计划项目(2022cxcy706)资助课题。
关键词 N^(6)-甲基腺苷 重度抑郁症 甲基化 m^(6)A甲基转移酶 m^(6)A去甲基化酶 N^(6)-methyladenosine(m^(6)A) major depressive disorder methylation m^(6)A methyltransferase m^(6)A demethyltransferase
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