Chromosome Dynamics Laboratory, RIKEN, Wako, Japan.
Elife. 2022 Aug 19;11:e78984. doi: 10.7554/eLife.78984.
In vertebrates, condensin I and condensin II cooperate to assemble rod-shaped chromosomes during mitosis. Although the mechanism of action and regulation of condensin I have been studied extensively, our corresponding knowledge of condensin II remains very limited. By introducing recombinant condensin II complexes into egg extracts, we dissect the roles of its individual subunits in chromosome assembly. We find that one of two HEAT subunits, CAP-D3, plays a crucial role in condensin II-mediated assembly of chromosome axes, whereas the other HEAT subunit, CAP-G2, has a very strong negative impact on this process. The structural maintenance of chromosomes ATPase and the basic amino acid clusters of the kleisin subunit CAP-H2 are essential for this process. Deletion of the C-terminal tail of CAP-D3 increases the ability of condensin II to assemble chromosomes and further exposes a hidden function of CAP-G2 in the lateral compaction of chromosomes. Taken together, our results uncover a multilayered regulatory mechanism unique to condensin II, and provide profound implications for the evolution of condensin II.
在脊椎动物中,凝缩素 I 和凝缩素 II 合作在有丝分裂过程中组装杆状染色体。虽然已经广泛研究了凝缩素 I 的作用机制和调节,但我们对凝缩素 II 的相应知识仍然非常有限。通过将重组的凝缩素 II 复合物引入卵提取物中,我们解析了其各个亚基在染色体组装中的作用。我们发现两个 HEAT 亚基之一的 CAP-D3 在凝缩素 II 介导的染色体轴组装中起着关键作用,而另一个 HEAT 亚基 CAP-G2 对该过程有很强的负面影响。染色体结构维持 ATP 酶和 kleisin 亚基 CAP-H2 的碱性氨基酸簇对于这个过程是必不可少的。CAP-D3 的 C 端尾部的缺失增加了凝缩素 II 组装染色体的能力,并进一步揭示了 CAP-G2 在染色体侧面紧缩中的隐藏功能。总之,我们的研究结果揭示了一种独特的凝缩素 II 多层次调节机制,并为凝缩素 II 的进化提供了深刻的启示。