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Activation of gene expression by histone deubiquitinase OTLD1

机译:组蛋白脱硫蛋白酶OtLD1的基因表达激活

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摘要

One of the main mechanisms of epigenetic control is post translational modification of histones, and one of the relatively less characterized, yet functionally important histone modifications is monoubiquitylation, which is reversed by histone deubiquitinases. In Arabidopsis, only two of such enzymes are known to date. One of them, OTLD1, deubiquitylates histone 2B and functions as a transcriptional repressor. But, could the same deubiquitinase act both as a repressor and an activator? Here, we addressed this question. Using gain-of-function and loss-of-function Arabidopsis alleles, we showed that OTLD1 can promote expression of a target gene. This transcriptional activation activity of OTLD1 involves occupation of the target chromatin by this enzyme, deubiquitination of monoubiquitylated H2B within the occupied regions, and formation of the euchromatic histone acetylation and methylation marks. Thus, OTLD1 can play a dual role in transcriptional repression and activation of its target genes. In these reactions, H2B ubiquitylation acts as both a repressive and an active mark whereas OTLD1 association with and deubiquitylation of the target chromatin may represent the key juncture between two opposing effects of this enzyme on gene expression.
机译:表观遗传控制的主要机制之一是组蛋白的翻译改性,并且相对较少的特征且功能重要的组蛋白修饰之一是单相中,其被组蛋白脱氢酶逆转。在拟南芥中,只有两种这样的酶迄今为止。其中一个,OtLD1,Deubiquitylates组蛋白2b和用作转录压缩机。但是,同样的氘代素酶也可以作为阻遏物和活化剂?在这里,我们解决了这个问题。使用功能性和函数丧失拟南芥等位基因,我们表明OTLD1可以促进靶基因的表达。 OTLD1的这种转录活化活性涉及通过该酶占据靶染色质,占用区域内的Monoubiquitylated H2B的脱水,以及形成欧洲组醇酰化和甲基化痕迹。因此,OTLD1可以在转录抑制和激活其靶基因中发挥双重作用。在这些反应中,H2B泛菌状作用作用抑制作用和活性标记,而靶染色质的OtLD1与脱硫和脱硫可以代表该酶对基因表达的两个相反效应之间的关键接合。

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