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A drive in SUVs: From development to disease

机译:SUV的驱动器:从发育到疾病

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摘要

Progression of cells through distinct phases of the cell cycle, and transition into out-of-cycling states, such as terminal differentiation and senescence, is accompanied by specific patterns of gene expression. These cell fate decisions are mediated not only by distinct transcription factors, but also chromatin modifiers that establish heritable epigenetic patterns. Lysine methyltransferases (KMTs) that mediate methylation marks on histone and non-histone proteins are now recognized as important regulators of gene expression in cycling and non-cycling cells. Among these, the SUV39 sub-family of KMTs, which includes SUV39H1, SUV39H2, G9a, GLP, SETDB1, and SETDB2, play a prominent role. In this review, we discuss their biochemical properties, sub-cellular localization and function in cell cycle, differentiation programs, and cellular senescence. We also discuss their aberrant expression in cancers, which exhibit de-regulation of cell cycle and differentiation.
机译:通过细胞周期的不同阶段的细胞进展,并转变为循环态,例如末端分化和衰老,伴随着基因表达的特定模式。 这些细胞命运决定不仅由不同的转录因子介导,而且还介导建立遗传性表观遗传模式的染色质调节剂。 在组蛋白和非组蛋白蛋白上介导甲基化标记的赖氨酸甲基转移酶(KMTS)现在被认为是循环和非循环细胞中基因表达的重要调节因子。 其中,包括SUV39H1,SUV39H2,G9A,GLP,SETDB1和SETDB2,包括SUV39的KMTS,起到突出的作用。 在本综述中,我们讨论其生物化学特性,细胞周期,分化计划和细胞衰老中的亚细胞定位和功能。 我们还在癌症中讨论了它们的异常表达,其表现出细胞周期和分化的脱节。

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