Life Sciences Institute and Innovation Center for Cell Signaling Network, Zhejiang University, Hangzhou, China.
Life Sciences Institute and Innovation Center for Cell Signaling Network, Zhejiang University, Hangzhou, China
EMBO Rep. 2018 Apr;19(4). doi: 10.15252/embr.201745484. Epub 2018 Feb 28.
Heterochromatin protein-1 (HP1) is a key component of heterochromatin. Reminiscent of the cohesin complex which mediates sister-chromatid cohesion, most HP1 proteins in mammalian cells are displaced from chromosome arms during mitotic entry, whereas a pool remains at the heterochromatic centromere region. The function of HP1 at mitotic centromeres remains largely elusive. Here, we show that double knockout (DKO) of HP1α and HP1γ causes defective mitosis progression and weakened centromeric cohesion. While mutating the chromoshadow domain (CSD) prevents HP1α from protecting sister-chromatid cohesion, centromeric targeting of HP1α CSD alone is sufficient to rescue the cohesion defects in HP1 DKO cells. Interestingly, HP1-dependent cohesion protection requires Haspin, an antagonist of the cohesin-releasing factor Wapl. Moreover, HP1α CSD directly binds the N-terminal region of Haspin and facilitates its centromeric localization. The need for HP1 in cohesion protection can be bypassed by centromeric targeting of Haspin or inhibiting Wapl activity. Taken together, these results reveal a redundant role for HP1α and HP1γ in the protection of centromeric cohesion through promoting Haspin localization at mitotic centromeres in mammalian cells.
异染色质蛋白-1(HP1)是异染色质的关键组成部分。与介导姐妹染色单体黏合的黏合蛋白复合物类似,哺乳动物细胞中的大多数 HP1 蛋白在有丝分裂进入时从染色体臂上移位,而一小部分则保留在异染色质着丝粒区域。HP1 在有丝分裂着丝粒的功能在很大程度上仍难以捉摸。在这里,我们表明 HP1α 和 HP1γ 的双敲除(DKO)导致有丝分裂进程缺陷和着丝粒黏合减弱。虽然突变染色质阴影结构域(CSD)可阻止 HP1α 保护姐妹染色单体黏合,但 HP1α CSD 单独靶向足以挽救 HP1 DKO 细胞中的黏合缺陷。有趣的是,HP1 依赖性黏合保护需要 Haspin,这是解聚因子 Wapl 的拮抗剂。此外,HP1α CSD 直接结合 Haspin 的 N 端区域,并促进其着丝粒定位。通过 Haspin 的着丝粒靶向或抑制 Wapl 活性,可以绕过 HP1 在黏合保护中的作用。总之,这些结果揭示了 HP1α 和 HP1γ 在通过促进 Haspin 在哺乳动物细胞的有丝分裂着丝粒定位来保护着丝粒黏合方面的冗余作用。