Institut Curie, CNRS, UMR 144, PSL Research University, Paris, France.
Institut Curie, PSL Research University, INSERM U932, Paris, France.
EMBO J. 2020 Oct 15;39(20):e105505. doi: 10.15252/embj.2020105505. Epub 2020 Sep 18.
Centromeres are built on repetitive DNA sequences (CenDNA) and a specific chromatin enriched with the histone H3 variant CENP-A, the epigenetic mark that identifies centromere position. Here, we interrogate the importance of CenDNA in centromere specification by developing a system to rapidly remove and reactivate CENP-A (CENP-A ). Using this system, we define the temporal cascade of events necessary to maintain centromere position. We unveil that CENP-B bound to CenDNA provides memory for maintenance on human centromeres by promoting de novo CENP-A deposition. Indeed, lack of CENP-B favors neocentromere formation under selective pressure. Occasionally, CENP-B triggers centromere re-activation initiated by CENP-C, but not CENP-A, recruitment at both ectopic and native centromeres. This is then sufficient to initiate the CENP-A-based epigenetic loop. Finally, we identify a population of CENP-A-negative, CENP-B/C-positive resting CD4 T cells capable to re-express and reassembles CENP-A upon cell cycle entry, demonstrating the physiological importance of the genetic memory.
着丝粒是建立在重复 DNA 序列(CenDNA)和富含组蛋白 H3 变体 CENP-A 的特定染色质上的,CENP-A 是识别着丝粒位置的表观遗传标记。在这里,我们通过开发一种快速去除和重新激活 CENP-A(CENP-A)的系统来研究 CenDNA 在着丝粒特化中的重要性。使用该系统,我们定义了维持着丝粒位置所需的时间级联事件。我们揭示了与 CenDNA 结合的 CENP-B 通过促进从头 CENP-A 沉积为人类着丝粒的维持提供记忆。事实上,缺乏 CENP-B 有利于在选择压力下形成新的着丝粒。偶尔,CENP-B 会触发 CENP-C 而不是 CENP-A 在异位和天然着丝粒处的募集,从而引发基于 CENP-A 的表观遗传循环。最后,我们鉴定了一群 CENP-A 阴性、CENP-B/C 阳性的静止 CD4 T 细胞,它们能够在细胞周期进入时重新表达和组装 CENP-A,证明了遗传记忆的生理重要性。