Butylin P A, Strunnikov A V
Tsitologiia. 2008;50(9):788-93.
Proper chromatin compaction in mitosis (condensation) is required for equal chromosome distribution and precise genetic information inheritance. Protein complex named condensin is responsible for the mitotic condensation, it also individualizes chromosomes, and ensures chromatin separation between sister chromatids in mitosis as well as proper mitotic spindle tension. Mitotic condensin function depends on recognition of the specific binding sites on the chromosome. Mechanism of condensin binding on the individual sites of the mitotic chromosomes, as well as molecular anatomy of these sites remains to be unclear. Even less known is how condensin binding on the individual sites helps separating chromosomes in anaphase. In current paper using minichromosome test, we analyze seven individual condensin binding sites in Saccharomyces cerevisiae found in previous all-genome CHIP on CHIP screening in our lab. This approach allowed us to find out what was the individual contribution of condensin binding sites in securing mitotic stability of the minichromosomes.
有丝分裂过程中适当的染色质压缩(凝聚)对于染色体的均匀分布和精确的遗传信息传递是必需的。名为凝聚素的蛋白质复合物负责有丝分裂凝聚,它还能使染色体个体化,并确保有丝分裂过程中姐妹染色单体之间的染色质分离以及适当的有丝分裂纺锤体张力。有丝分裂凝聚素的功能取决于对染色体上特定结合位点的识别。凝聚素在有丝分裂染色体各个位点上的结合机制以及这些位点的分子结构仍不清楚。关于凝聚素在各个位点上的结合如何在后期帮助分离染色体,人们了解得更少。在当前的论文中,我们使用微型染色体测试,分析了在我们实验室之前的全基因组芯片上芯片筛选中发现的酿酒酵母中的七个凝聚素结合位点。这种方法使我们能够了解凝聚素结合位点在确保微型染色体有丝分裂稳定性方面的个体贡献。