Takahashi Motoko, Wakai Toshifumi, Hirota Toru
Cancer Institute of the Japanese Foundation for Cancer Research (JFCR), Tokyo 135-8550, Japan; Niigata University Graduate School of Medical and Dental Sciences, Niigata 951-8112, Japan.
Niigata University Graduate School of Medical and Dental Sciences, Niigata 951-8112, Japan.
Genes Dev. 2016 Sep 1;30(17):1931-6. doi: 10.1101/gad.282855.116. Epub 2016 Sep 15.
The chromokinesin KIF4A has been implicated in shaping mitotic chromosomes, but its functional relationship to condensin complexes remains controversial. Here, we found that, in mitosis, KIF4A associates with condensin I but not with condensin II. Mutational analyses indicated that the enrichment of condensin I to chromosomal axes depends on its association with KIF4A in a way that likely involves its motor activity. Remarkably, this interaction is required for condensin I to confer physiological properties to chromosomes. These observations provide an insight into how condensin I is enriched at chromosomal axes and underscore the significance of axial structure in organizing mitotic chromosomes.
染色体驱动蛋白KIF4A与有丝分裂染色体的形成有关,但其与凝聚素复合体的功能关系仍存在争议。在这里,我们发现,在有丝分裂过程中,KIF4A与凝聚素I结合,而不与凝聚素II结合。突变分析表明,凝聚素I在染色体轴上的富集取决于其与KIF4A的结合,这种结合可能涉及其运动活性。值得注意的是,这种相互作用是凝聚素I赋予染色体生理特性所必需的。这些观察结果为凝聚素I如何在染色体轴上富集提供了见解,并强调了轴结构在有丝分裂染色体组织中的重要性。