Converso Cynthia, Pierrakeas Leonidas, Chan Lirong, Chowdhury Shalvi, de Onis Emily, Kuznetsov Vyacheslav I, Denu John M, Luk Ed
Department of Biochemistry and Cell Biology, Stony Brook University, Stony Brook, New York, United States of America.
Renaissance School of Medicine, Stony Brook University, Stony Brook, New York, United States of America.
PLoS Biol. 2025 May 12;23(5):e3003059. doi: 10.1371/journal.pbio.3003059. eCollection 2025 May.
The variant histone H2A.Z is deposited into nucleosomes immediately downstream of promoters, where it plays a critical role in transcription. The site-specific deposition of H2A.Z is catalyzed by the SWR complex, a conserved chromatin remodeler with affinity for promoter-proximal nucleosome-depleted regions (NDRs) and histone acetylation. By comparing the genomic distribution of H2A.Z in wild-type and SWR-deficient cells, we found that SWR is also responsible for depositing H2A.Z at thousands of non-canonical sites not directly linked to NDRs or histone acetylation. To understand the targeting mechanism of H2A.Z, we presented SWR to a library of canonical nucleosomes isolated from yeast and analyzed the preferred substrates. Our results revealed that SWR preferentially deposited H2A.Z into a subset of endogenous H2A.Z sites, which are overrepresented by polyadenine tracts on the top strands of the DNA duplex at the nucleosomal entry-exit sites. Insertion of polyadenine sequences into recombinant nucleosomes near the outgoing H2A-H2B dimer enhanced SWR's affinity for the nucleosomal substrate and increased its H2A.Z insertion activity. These findings suggest that the genome encodes sequence-based information that facilitates remodeler-mediated targeting of H2A.Z.
变异组蛋白H2A.Z沉积在启动子下游紧邻的核小体中,在转录过程中发挥关键作用。H2A.Z的位点特异性沉积由SWR复合物催化,这是一种保守的染色质重塑因子,对启动子近端核小体缺失区域(NDR)和组蛋白乙酰化具有亲和力。通过比较野生型细胞和SWR缺陷型细胞中H2A.Z的基因组分布,我们发现SWR还负责将H2A.Z沉积在数千个与NDR或组蛋白乙酰化无直接关联的非典型位点。为了解H2A.Z的靶向机制,我们将SWR作用于从酵母中分离出的典型核小体文库,并分析其偏好的底物。我们的结果表明,SWR优先将H2A.Z沉积到内源性H2A.Z位点的一个子集中,这些位点在核小体进出位点的DNA双链体的顶链上富含聚腺苷酸序列。在即将离开的H2A-H2B二聚体附近的重组核小体中插入聚腺苷酸序列,增强了SWR对核小体底物的亲和力,并增加了其H2A.Z插入活性。这些发现表明,基因组编码基于序列的信息,有助于重塑因子介导的H2A.Z靶向作用。