University of California at Berkeley, Berkeley, California 94720, USA.
Genes Dev. 2020 Jun 1;34(11-12):819-831. doi: 10.1101/gad.335471.119. Epub 2020 Apr 30.
Condensin mediates chromosome condensation, which is essential for proper chromosome segregation during mitosis. Prior to anaphase of budding yeast, the ribosomal DNA (RDN) condenses to a thin loop that is distinct from the rest of the chromosomes. We provide evidence that the establishment and maintenance of this RDN condensation requires the regulation of condensin by Cdc5p (polo) kinase. We show that Cdc5p is recruited to the site of condensin binding in the RDN by cohesin, a complex related to condensin. Cdc5p and cohesin prevent condensin from misfolding the RDN into an irreversibly decondensed state. From these and other observations, we propose that the spatial regulation of Cdc5p by cohesin modulates condensin activity to ensure proper RDN folding into a thin loop. This mechanism may be evolutionarily conserved, promoting the thinly condensed constrictions that occur at centromeres and RDN of mitotic chromosomes in plants and animals.
凝缩蛋白介导染色体凝缩,这对于有丝分裂过程中染色体的正确分离是必不可少的。在芽殖酵母的后期之前,核糖体 DNA(RDN)凝缩成一个与其余染色体不同的薄环。我们提供的证据表明,这种 RDN 凝缩的建立和维持需要 Cdc5p(polo)激酶对凝缩蛋白的调节。我们表明,Cdc5p 通过与凝缩蛋白相关的复合物黏连蛋白被招募到 RDN 中凝缩蛋白结合的部位。Cdc5p 和黏连蛋白防止凝缩蛋白将 RDN 错误折叠成不可逆去凝聚状态。从这些和其他观察结果中,我们提出,黏连蛋白对 Cdc5p 的空间调节调节凝缩蛋白的活性,以确保 RDN 正确折叠成薄环。这种机制可能在进化上是保守的,促进了在植物和动物的有丝分裂染色体的着丝粒和 RDN 处发生的薄凝聚收缩。