Ahonen Leena J, Kukkonen Anu M, Pouwels Jeroen, Bolton Margaret A, Jingle Christopher D, Stukenberg P Todd, Kallio Marko J
VTT Technical Research Centre of Finland, Medical Biotechnology, University of Turku, Turku, Finland.
Chromosoma. 2009 Feb;118(1):71-84. doi: 10.1007/s00412-008-0178-0. Epub 2008 Sep 11.
Incenp is an essential mitotic protein that, together with Aurora B, Survivin, and Borealin, forms the core of the chromosomal passenger protein complex (CPC). The CPC regulates various mitotic processes and functions to maintain genomic stability. The proper subcellular localization of the CPC and its full catalytic activity require the presence of each core subunit in the complex. We have investigated the mitotic tasks of the CPC using a function blocking antibody against Incenp microinjected into cells at different mitotic phases. This method allowed temporal analysis of CPC functions without perturbation of complex assembly or activity prior to injection. We have also studied the dynamic properties of Incenp and Aurora B using fusion protein photobleaching. We found that in early mitotic cells, Incenp and Aurora B exhibit dynamic turnover at centromeres, which is prevented by the anti-Incenp antibody. In these cells, the loss of centromeric CPC turnover is accompanied by forced mitotic exit without the execution of cytokinesis. Introduction of anti-Incenp antibody into early anaphase cells causes abnormalities in sister chromatid separation through defects in anaphase spindle functions. In summary, our data uncovers new mitotic roles for the CPC in anaphase and proposes that CPC turnover at centromeres modulates spindle assembly checkpoint signaling.
Incenp是一种重要的有丝分裂蛋白,它与极光激酶B、生存素和硼蛋白一起,构成了染色体乘客蛋白复合体(CPC)的核心。CPC调节各种有丝分裂过程和功能,以维持基因组稳定性。CPC在亚细胞中的正确定位及其完整的催化活性需要复合体中每个核心亚基的存在。我们使用针对Incenp的功能阻断抗体,在不同有丝分裂阶段显微注射到细胞中,研究了CPC的有丝分裂任务。这种方法允许在不干扰注射前复合体组装或活性的情况下,对CPC功能进行时间分析。我们还使用融合蛋白光漂白技术研究了Incenp和极光激酶B的动态特性。我们发现,在有丝分裂早期细胞中,Incenp和极光激酶B在着丝粒处表现出动态周转,而抗Incenp抗体可阻止这种周转。在这些细胞中,着丝粒CPC周转的丧失伴随着在没有胞质分裂的情况下被迫退出有丝分裂。将抗Incenp抗体引入后期早期细胞会通过后期纺锤体功能缺陷导致姐妹染色单体分离异常。总之,我们的数据揭示了CPC在后期的新的有丝分裂作用,并提出着丝粒处的CPC周转调节纺锤体组装检查点信号。