Department of Biochemistry and Biophysics, University of Pennsylvania, School of Medicine, Philadelphia, Pennsylvania 19104-6059, USA.
Nature. 2010 Sep 16;467(7313):347-51. doi: 10.1038/nature09323. Epub 2010 Aug 25.
Centromeres are specified epigenetically, and the histone H3 variant CENP-A is assembled into the chromatin of all active centromeres. Divergence from H3 raises the possibility that CENP-A generates unique chromatin features to mark physically centromere location. Here we report the crystal structure of a subnucleosomal heterotetramer, human (CENP-A-H4)(2), that reveals three distinguishing properties encoded by the residues that comprise the CENP-A targeting domain (CATD; ref. 2): (1) a CENP-A-CENP-A interface that is substantially rotated relative to the H3-H3 interface; (2) a protruding loop L1 of the opposite charge as that on H3; and (3) strong hydrophobic contacts that rigidify the CENP-A-H4 interface. Residues involved in the CENP-A-CENP-A rotation are required for efficient incorporation into centromeric chromatin, indicating specificity for an unconventional nucleosome shape. DNA topological analysis indicates that CENP-A-containing nucleosomes are octameric with conventional left-handed DNA wrapping, in contrast to other recent proposals. Our results indicate that CENP-A marks centromere location by restructuring the nucleosome from within its folded histone core.
着丝粒是通过表观遗传机制特异性指定的,组蛋白 H3 变体 CENP-A 被组装到所有活性着丝粒的染色质中。与 H3 的差异使得 CENP-A 产生独特的染色质特征来标记物理着丝粒位置成为可能。在这里,我们报告了一个亚核小体异四聚体(CENP-A-H4)(2)的晶体结构,该结构揭示了由组成 CENP-A 靶向结构域(CATD;参考文献 2)的残基编码的三个区别特性:(1)相对于 H3-H3 界面,CENP-A-CENP-A 界面发生了实质性的旋转;(2)与 H3 相反电荷的突出环 L1;(3)强疏水性接触使 CENP-A-H4 界面刚性化。参与 CENP-A-CENP-A 旋转的残基对于有效掺入着丝粒染色质是必需的,这表明其具有非常规核小体形状的特异性。DNA 拓扑分析表明,含有 CENP-A 的核小体是具有传统左手 DNA 缠绕的八聚体,与其他最近的提议形成对比。我们的结果表明,CENP-A 通过从其折叠的组蛋白核心内部重构核小体来标记着丝粒位置。