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Structural and mechanistic insights into ATRX-dependent and -independent functions of the histone chaperone DAXX

机译:对组蛋白伴侣DAXX依赖ATRX和独立的功能的结构和机理的见解

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摘要

The ATRX–DAXX histone chaperone complex incorporates the histone variant H3.3 at heterochromatic regions in a replication-independent manner. Here, we present a high-resolution x-ray crystal structure of an interaction surface between ATRX and DAXX. We use single amino acid substitutions in DAXX that abrogate formation of the complex to explore ATRX-dependent and ATRX-independent functions of DAXX. We find that the repression of specific murine endogenous retroviruses is dependent on DAXX, but not on ATRX. In support, we reveal the existence of two biochemically distinct DAXX-containing complexes: the ATRX–DAXX complex involved in gene repression and telomere chromatin structure, and a DAXX–SETDB1–KAP1–HDAC1 complex that represses endogenous retroviruses independently of ATRX and H3.3 incorporation into chromatin. We find that histone H3.3 stabilizes DAXX protein levels and can affect DAXX-regulated gene expression without incorporation into nucleosomes. Our study demonstrates a nucleosome-independent function for the H3.3 histone variant.
机译:ATRX-DAXX组蛋白伴侣复合物以复制独立的方式在异色区域结合了组蛋白变体H3.3。在这里,我们介绍ATRX和DAXX之间的相互作用表面的高分辨率x射线晶体结构。我们在DAXX中使用单个氨基酸取代来消除复合物的形成,以探索DAXX的ATRX依赖性和ATRX依赖性功能。我们发现抑制特定的小鼠内源性逆转录病毒取决于DAXX,但不取决于ATRX。作为支持,我们揭示了存在两种在生化方面不同的含DAXX的复合物:参与基因抑制和端粒染色质结构的ATRX-DAXX复合物,以及独立于ATRX和H3抑制内源逆转录病毒的DAXX-SETDB1-KAP1-HDAC1复合物。 3并入染色质。我们发现组蛋白H3.3稳定DAXX蛋白水平,并可以影响DAXX调节基因表达而无需掺入核小体。我们的研究表明H3.3组蛋白变体的核小体独立功能。

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