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首页> 外文期刊>Trends in biochemical sciences >Tudor: a versatile family of histone methylation 'readers'
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Tudor: a versatile family of histone methylation 'readers'

机译:帝舵(Tudor):全能的组蛋白甲基化“阅读器”家族

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摘要

The Tudor domain comprises a family of motifs that mediate protein-protein interactions required for various DNA-templated biological processes. Emerging evidence demonstrates a versatility of the Tudor family domains by identifying their specific interactions to a wide variety of histone methylation marks. Here, we discuss novel functions of a number of Tudor-containing proteins [including Jumonji domain-containing 2A (JMJD2A), p53-binding protein 1 (53BP1), SAGA-associated factor 29 (SGF29), Spindlin1, ubiquitin-like with PHD and RING finger domains 1 (UHRF1), PHD finger protein 1 (PHF1), PHD finger protein 19 (PHF19), and SAWADEE homeodomain homolog 1 (SHH1)] in 'reading' unique methylation events on histones in order to facilitate DNA damage repair or regulate transcription. This review covers our recent understanding of the molecular bases for histone-Tudor interactions and their biological outcomes. As deregulation of Tudor-containing proteins is associated with certain human disorders, pharmacological targeting of Tudor interactions could provide new avenues for therapeutic intervention.
机译:帝舵域包含一系列介导各种DNA模板生物学过程所需的蛋白质-蛋白质相互作用的基序。新兴证据通过鉴定它们与多种组蛋白甲基化标记的特异性相互作用,证明了都铎家族域的多功能性。在这里,我们讨论了许多含Tudor的蛋白质的新功能[包括含有Jumonji域的2A(JMJD2A),p53结合蛋白1(53BP1),SAGA相关因子29(SGF29),Spindlin1,具有PHD的泛素样蛋白和RING手指域1(UHRF1),PHD手指蛋白1(PHF1),PHD手指蛋白19(PHF19)和SAWADEE同源域同源物1(SHH1)]在组蛋白的“读取”独特甲基化事件中,以促进DNA损伤修复或调节转录。这篇综述涵盖了我们最近对组蛋白-Tudor相互作用的分子基础及其生物学结果的理解。由于含Tudor的蛋白质的失调与某些人类疾病有关,因此Tudor相互作用的药理学靶向可能为治疗干预提供新途径。

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