首页> 外文期刊>The Journal of biological chemistry >NuA4-dependent Acetylation of Nucleosomal Histones H4 and H2A Directly Stimulates Incorporation of H2A.Z by the SWR1 Complex
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NuA4-dependent Acetylation of Nucleosomal Histones H4 and H2A Directly Stimulates Incorporation of H2A.Z by the SWR1 Complex

机译:Nua4依赖性核化酶H4和H 2 A的乙酰化直接刺激SWR1复合物的H2A.Z掺入

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Structural and functional analyses of nucleosomes containing histone variant H2A.Z have drawn a lot of interest over the past few years. Important work in budding yeast has shown that H2A.Z (Htz1)-containing nucleosomes are specifically located on the promoter regions of genes, creating a specific chromatin structure that is poised for disassembly during transcription activation. The SWR1 complex is responsible for incorporation of Htz1 into nucleosomes through ATP-dependent exchange of canonical H2A-H2B dimers for Htz1-H2B dimers. Interestingly, the yeast SWR1 complex is functionally linked to the NuA4 acetyltransferase complex in vivo. NuA4 and SWR1 are physically associated in higher eukaryotes as they are homologous to the TIP60/p400 complex, which encompasses both histone acetyltransferase (Tip60) and histone exchange (p400/Domino) activities. Here we present work investigating the impact of NuA4-dependent acetylation on SWR1-driven incorporation of H2A.Z into chromatin. Using in vitro histone exchange assays with native chromatin, we demonstrate that prior chromatin acetylation by NuA4 greatly stimulates the exchange of H2A for H2A.Z. Interestingly, we find that acetylation of H2A or H4 N-terminal tails by NuA4 can independently stimulate SWR1 activity. Accordingly, we demonstrate that mutations of H4 or H2A N-terminal lysine residues have similar effects on H2A.Z incorporation in vivo, and cells carrying mutations in both tails are nonviable. Finally, depletion experiments indicate that the bromodomain-containing protein Bdf1 is important for NuA4-dependent stimulation of SWR1. These results provide important mechanistic insight into the functional cross-talk between chromatin acetylation and ATP-dependent exchange of histone H2A variants.
机译:含有组蛋白变体H2A.Z的核胚段的结构和功能分析在过去几年中吸引了很多兴趣。在萌芽酵母中的重要作用表明,H2A.Z(HTZ1) - 甲基核肉特异性地位于基因的启动子区域上,产生特定的染色质结构,该结构在转录激活过程中被拆卸。 SWR1复合物负责通过针对HTZ1-H2B二聚体的ATP依赖性交换的ATP依赖性交换将HTZ1掺入核体中。有趣的是,酵母SWR1复合物在体内与Nua4乙酰转移酶复合物有效。 Nua4和Swr1在较高的真核表中物理相关,因为它们与Tip60 / P400复合物同源,其包括组蛋白乙酰转移酶(Tip60)和组蛋白交换(P400 / Domino)的活动。在这里,我们提出了研究Nua4依赖性乙酰化对SWR1驱动的H2A.Z掺入染色质的影响。使用具有天然染色质的体外组蛋白的交换测定,我们证明Nua4的染色质乙酰化乙酰化大大刺激了H2A.Z的H2A的交换。有趣的是,Nua4的H 2 G或H 4 N-末端尾部的乙酰化可以独立地刺激SWR1活性。因此,我们证明了H4或H 2-末端赖氨酸残基的突变对体内H2A.Z掺入具有类似的影响,并且在两个尾部中携带突变的细胞是不可行的。最后,耗尽实验表明含有溴菊母的蛋白质BDF1对于Nua4依赖性刺激的SWR1是重要的。这些结果为染色质乙酰化和组蛋白H2A变体的ATP依赖性交换之间的功能串扰提供了重要的机械洞察力。

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