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The diverse functions of Dot1 and H3K79 methylation.

机译:Dot1和H3K79甲基化的多种功能。

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摘要

DOT1 (disruptor of telomeric silencing; also called Kmt4) was initially discovered in budding yeast in a genetic screen for genes whose deletion confers defects in telomeric silencing. Since the discovery approximately 10 years ago that Dot1 and its mammalian homolog, DOT1L (DOT1-Like), possess histone methyltransferase activity toward histone H3 Lys 79, great progress has been made in characterizing their enzymatic activities and the role of Dot1/DOT1L-mediated H3K79 methylation in transcriptional regulation, cell cycle regulation, and the DNA damage response. In addition, gene disruption in mice has revealed that mouse DOT1L plays an essential role in embryonic development, hematopoiesis, cardiac function, and the development of leukemia. The involvement of DOT1L enzymatic activity in leukemogenesis driven by a subset of MLL (mixed-lineage leukemia) fusion proteins raises the possibility of targeting DOT1L for therapeutic intervention.
机译:DOT1(端粒沉默的破坏者;也称为Kmt4)最初是在发芽酵母中通过基因筛选发现其缺失会导致端粒沉默缺陷的基因。自大约10年前发现Dot1及其哺乳动物同源物DOT1L(DOT1-Like)对组蛋白H3 Lys 79具有组蛋白甲基转移酶活性以来,在表征其酶促活性和Dot1 / DOT1L介导的作用方面取得了重大进展H3K79甲基化在转录调控,细胞周期调控和DNA损伤反应中。此外,小鼠的基因破坏显示小鼠DOT1L在胚胎发育,造血,心脏功能和白血病的发展中起着至关重要的作用。 DOT1L酶促活性参与由MLL(混合谱系白血病)融合蛋白的子集驱动的白血病发生,增加了靶向DOT1L进行治疗干预的可能性。

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