The Francis Crick Institute, 1 Midland Road, London NW1 1AT, UK.
Institut Curie, PSL Research University, CNRS, UMR3664, Equipe Labellisée Ligue contre le Cancer, Paris, France; Sorbonne Universités, UPMC Univ Paris 06, CNRS, UMR3664, Paris, France.
Mol Cell. 2018 Oct 4;72(1):112-126.e5. doi: 10.1016/j.molcel.2018.08.043. Epub 2018 Sep 11.
Maintenance of epigenetic integrity relies on coordinated recycling and partitioning of parental histones and deposition of newly synthesized histones during DNA replication. This process depends upon a poorly characterized network of histone chaperones, remodelers, and binding proteins. Here we implicate the POLE3-POLE4 subcomplex of the leading-strand polymerase, Polε, in replication-coupled nucleosome assembly through its ability to selectively bind to histones H3-H4. Using hydrogen/deuterium exchange mass spectrometry and physical mapping, we define minimal domains necessary for interaction between POLE3-POLE4 and histones H3-H4. Biochemical analyses establish that POLE3-POLE4 is a histone chaperone that promotes tetrasome formation and DNA supercoiling in vitro. In cells, POLE3-POLE4 binds both newly synthesized and parental histones, and its depletion hinders helicase unwinding and chromatin PCNA unloading and compromises coordinated parental histone retention and new histone deposition. Collectively, our study reveals that POLE3-POLE4 possesses intrinsic H3-H4 chaperone activity, which facilitates faithful nucleosome dynamics at the replication fork.
维持表观遗传完整性依赖于在 DNA 复制过程中协调回收和分配亲本组蛋白以及新合成组蛋白的过程。这一过程取决于组蛋白伴侣、重塑因子和结合蛋白的特征网络。在这里,我们通过其选择性结合组蛋白 H3-H4 的能力,将 Polε 的前导链聚合酶 POLE3-POLE4 亚基复合物牵连到复制偶联核小体组装中。使用氢/氘交换质谱和物理作图,我们定义了 POLE3-POLE4 与组蛋白 H3-H4 之间相互作用所必需的最小结构域。生化分析确定 POLE3-POLE4 是一种组蛋白伴侣,可在体外促进四聚体形成和 DNA 超螺旋。在细胞中,POLE3-POLE4 结合新合成和亲本组蛋白,其缺失会阻碍解旋酶解旋和染色质 PCNA 卸载,并损害协调的亲本组蛋白保留和新组蛋白沉积。总的来说,我们的研究表明 POLE3-POLE4 具有内在的 H3-H4 伴侣活性,可促进复制叉处核小体的动态变化。