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首页> 外文期刊>Biochimica et Biophysica Acta. Gene Regulatory Mechanisms >Small molecule modulators of histone acetylation and methylation: A disease perspective
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Small molecule modulators of histone acetylation and methylation: A disease perspective

机译:组蛋白乙酰化和甲基化的小分子调节剂:疾病的观点。

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Chromatin modifications have gained immense significance in the past few decades as key regulators of gene expression. The enzymes responsible for these modifications along with the other non-histone proteins, remodeling factors and small RNAs modulate the chromatin dynamicity, which in turn directs the chromatin function. A concerted action of different modifying enzymes catalyzes these modifications, which are read by effector modules and converted to functional outcomes by various protein complexes. Several small molecules in the physiological system such as acetyl CoA, NAD+, and ATP are actively involved in regulating these functional outcomes. Recent understanding in the field of epigenetics indicate the possibility of the existence of a network, 'the epigenetic language' involving cross talk among different modifications that could regulate cellular processes like transcription, replication and repair. Hence, these modifications are essential for the cellular homeostasis, and any alteration in this balance leads to a pathophysiological condition or disease manifestation. Therefore, it is becoming more evident that modulators of these modifying enzymes could be an attractive therapeutic strategy, popularly referred to as 'Epigenetic therapy.' Although this field is currently monopolized by DNA methylation and histone deacetylase inhibitors, this review highlights the modulators of the other modifications namely histone acetylation, lysine methylation and arginine methylation and argues in favor of their therapeutic potential.
机译:在过去的几十年中,染色质修饰作为基因表达的关键调节剂,已经获得了巨大的意义。负责这些修饰的酶与其他非组蛋白,重塑因子和小RNA一起调节染色质的动态性,进而控制染色质的功能。不同修饰酶的协同作用可催化这些修饰,这些修饰可通过效应子模块读取,并通过各种蛋白质复合物转化为功能性产物。生理系统中的一些小分子,例如乙酰辅酶A,NAD +和ATP,都积极参与调节这些功能结果。表观遗传学领域的最新理解表明存在网络的可能性,“表观遗传语言”涉及不同修饰之间的串扰,这些修饰可以调节细胞过程(如转录,复制和修复)。因此,这些修饰对于细胞稳态是必不可少的,并且这种平衡的任何改变都将导致病理生理状况或疾病表现。因此,越来越明显的是,这些修饰酶的调节剂可能是一种有吸引力的治疗策略,通常被称为“表观遗传治疗”。尽管目前该领域由DNA甲基化和组蛋白脱乙酰基酶抑制剂垄断,但本综述着重强调了其他修饰的调节剂,即组蛋白乙酰化,赖氨酸甲基化和精氨酸甲基化,并主张其治疗潜力。

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