MRC Laboratory of Molecular Biology, Francis Crick Avenue, Cambridge CB2 0QH, UK.
Nucleic Acids Res. 2020 Nov 4;48(19):11172-11184. doi: 10.1093/nar/gkaa772.
Kinetochores are large multi-subunit complexes that attach centromeric chromatin to microtubules of the mitotic spindle, enabling sister chromatid segregation in mitosis. The inner kinetochore constitutive centromere associated network (CCAN) complex assembles onto the centromere-specific Cenp-A nucleosome (Cenp-ANuc), thereby coupling the centromere to the microtubule-binding outer kinetochore. CCAN is a conserved 14-16 subunit complex composed of discrete modules. Here, we determined the crystal structure of the Saccharomyces cerevisiae Cenp-HIKHead-TW sub-module, revealing how Cenp-HIK and Cenp-TW interact at the conserved Cenp-HIKHead-Cenp-TW interface. A major interface is formed by the C-terminal anti-parallel α-helices of the histone fold extension (HFE) of the Cenp-T histone fold domain (HFD) combining with α-helix H3 of Cenp-K to create a compact three α-helical bundle. We fitted the Cenp-HIKHead-TW sub-module to the previously determined cryo-EM map of the S. cerevisiae CCAN-Cenp-ANuc complex. This showed that the HEAT repeat domain of Cenp-IHead and C-terminal HFD of Cenp-T of the Cenp-HIKHead-TW sub-module interact with the nucleosome DNA gyre at a site close to the Cenp-ANuc dyad axis. Our structure provides a framework for understanding how Cenp-T links centromeric Cenp-ANuc to the outer kinetochore through its HFD and N-terminal Ndc80-binding motif, respectively.
着丝粒是大型多亚基复合物,将着丝粒染色质附着到有丝分裂纺锤体的微管上,从而使姐妹染色单体在有丝分裂中分离。着丝粒核心的组成性着丝粒相关网络 (CCAN) 复合物组装到着丝粒特异性 Cenp-A 核小体 (Cenp-ANuc) 上,从而将着丝粒与微管结合的外着丝粒连接起来。CCAN 是一个保守的 14-16 亚基复合物,由离散的模块组成。在这里,我们确定了酿酒酵母 Cenp-HIKHead-TW 亚基的晶体结构,揭示了 Cenp-HIK 和 Cenp-TW 如何在保守的 Cenp-HIKHead-Cenp-TW 界面相互作用。一个主要的界面由 Cenp-T 组蛋白折叠域 (HFD) 的 C 末端反平行 α-螺旋和 Cenp-K 的 α-螺旋 H3 形成,形成一个紧凑的三 α-螺旋束。我们将 Cenp-HIKHead-TW 亚基拟合到先前确定的酿酒酵母 CCAN-Cenp-ANuc 复合物的冷冻电镜图谱中。这表明 Cenp-IHead 的 HEAT 重复域和 Cenp-T 的 C 末端 HFD 与 Cenp-HIKHead-TW 亚基与核小体 DNA 回旋接近 Cenp-ANuc 二联体轴的位置相互作用。我们的结构为理解 Cenp-T 如何通过其 HFD 和 N 末端 Ndc80 结合基序分别将着丝粒 Cenp-ANuc 与外着丝粒连接提供了一个框架。