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Identification of Two Distinct Classes of the Human INO80 Complex Genome-Wide

机译:人类INO80复杂基因组范围内两个不同类别的鉴定

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摘要

Chromatin remodeling and histone modifying enzymes play a critical role in shaping the regulatory output of a cell. Although much is known about these classes of proteins, identifying the mechanisms by which they coordinate gene expression programs remains an exciting topic of investigation. One factor that may contribute to the targeting and activity of chromatin regulators is local chromatin landscape. We leveraged genomic approaches and publically-available datasets to characterize the chromatin landscape at targets of the human INO80 chromatin remodeling complex (INO80-C). Our data revealed two classes of INO80-C targets with distinct chromatin signatures. The predominant INO80-C class was enriched for open chromatin, H3K27ac, and representative subunits from each of the three INO80-C modules (RUVBL1, RUVBL2, MCRS1, YY1). We named this class Canonical INO80. Notably, we identified an unexpected class of INO80-C targets that contained only the INO80 ATPase and harbored a repressive chromatin signature characterized by inaccessible chromatin, H3K27me3, and the methyltransferase EZH2. We named this class Non-Canonical INO80 (NC-INO80). Biochemical approaches indicated that INO80-C and the H3K27 acetyltransferase P300 physically interact, suggesting INO80-C and P300 may jointly coordinate chromatin accessibility at Canonical INO80 sites. No interaction was detected between INO80-C and EZH2, indicating INO80-C and EZH2 may engage in a separate form of regulatory crosstalk at NC-INO80 targets. Our data indicate that INO80-C is more compositionally heterogenous at its genomic targets than anticipated. Moreover, our data suggest there is an important link between INO80-C and histone modifying enzymes that may have consequences in developmental and pathological contexts.
机译:染色质重塑和组蛋白修饰酶在塑造细胞的调节输出中起关键作用。尽管对这类蛋白质了解很多,但是鉴定它们协调基因表达程序的机制仍然是令人兴奋的研究课题。可能影响染色质调节剂靶向和活性的因素之一是局部染色质景观。我们利用基因组学方法和公开可用的数据集来表征人INO80染色质重塑复合物(INO80-C)目标上的染色质景观。我们的数据揭示了具有不同染色质特征的两类INO80-C目标。主要的INO80-C类丰富了三个INO80-C模块(RUVBL1,RUVBL2,MCRS1,YY1)中每个模块的开放染色质,H3K27ac和代表性亚基。我们将此类命名为Canonical INO80。值得注意的是,我们发现了一个意想不到的INO80-C靶标,该靶标仅包含INO80 ATPase,并具有以难以接近的染色质,H3K27me3和甲基转移酶EZH2为特征的阻抑染色质特征。我们将此类命名为非规范INO80(NC-INO80)。生化方法表明,INO80-C和H3K27乙酰基转移酶P300物理相互作用,这表明INO80-C和P300可能共同协调规范INO80位点的染色质可及性。在INO80-C和EZH2之间未检测到相互作用,表明INO80-C和EZH2可能在NC-INO80靶标处以单独形式的调节串扰参与。我们的数据表明,INO80-C在其基因组靶点上的成分异质性超过了预期。此外,我们的数据表明,INO80-C与组蛋白修饰酶之间存在重要的联系,这可能会对发育和病理情况产生影响。

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