首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Trimethylation of histone H3K76 by Dot1B enhances cell cycle progression after mitosis in Trypanosoma cruzi
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Trimethylation of histone H3K76 by Dot1B enhances cell cycle progression after mitosis in Trypanosoma cruzi

机译:通过DOT1B的组蛋白H3K76的三甲基化增强了睾丸瘤Cruzi的细胞分泌后细胞周期进展

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摘要

Dot1 enzymes are histone methyltransferases that mono-, di- and trimethylate lysine 79 of histone H3 to affect several nuclear processes. The functions of these different methylation states are still largely unknown. Trypanosomes, which are flagellated protozoa that cause several parasitic diseases, have two Dot1 homologues. Dot1A catalyzes the mono- and dimethylation of lysine 76 during late G2 and mitosis, and Dot1B catalyzes trimethylation, which is a modification found in all stages of the cell cycle. Here, we generated Trypanosoma cruzi lines lacking Dot1B. Deletion of one allele resulted in parasites with increased levels of mono- and dimethylation and a reduction in H3K76me3. In the full knockout (DKO), no trimethylation was observed. Both the DKO and the single knockout (SKO) showed aberrant morphology and decreased growth due to cell cycle arrest after G2. This phenotype could be rescued by caffeine in the DKO, as caffeine is a checkpoint inhibitor of the cell cycle. The knockouts also phosphorylated.H2A without producing extensive DNA breaks, and Dot1B-depleted cells were more susceptible to general checkpoint kinase inhibitors, suggesting that a lack of H3K76 trimethylation prevents the initiation and/or completion of cytokinesis.
机译:DOT1酶是组蛋白甲基转移酶,其组蛋白H3的单甲基和三甲基酯赖氨酸79以影响若干核过程。这些不同甲基化状态的功能仍然很大程度上是未知的。锥虫,其被鞭打的原生动物导致几种寄生虫疾病,具有两个DOT1同源物。 DOT1a在晚期G2和有丝分裂期间催化赖氨酸76的单甲基化,并且DOT1b催化三甲基化,这是在细胞周期的所有阶段发现的修饰。在这里,我们生成缺乏DOT1b的锥虫瘤线。缺失一位等位基因导致寄生虫,单级和二甲基化水平增加以及H3K76ME3的还原。在完全敲除(DKO)中,未观察到三甲基化。 DKO和单一的敲除(SKO)都显示出异常形态,并且由于细胞周期停止而导致G2后的细胞循环减少降低。这种表型可以通过DKO中的咖啡因拯救,因为咖啡因是细胞周期的检查点抑制剂。敲除也磷酸化.H2a而不产生广泛的DNA断裂,并且DOT1b耗尽的细胞更容易受到一般检查点激酶抑制剂的影响,表明缺乏H3K76三甲基化可防止细胞因子引发和/或完成。

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