Wheatley Sally P, Henzing Alexander J, Dodson Helen, Khaled Walid, Earnshaw William C
Chromosome Structure Laboratory, Wellcome Centre for Cell Biology, Institute of Cell and Molecular Biology, University of Edinburgh, Mayfield Road, Edinburgh EH9 3JR, Scotland, United Kingdom.
J Biol Chem. 2004 Feb 13;279(7):5655-60. doi: 10.1074/jbc.M311299200. Epub 2003 Nov 10.
The chromosomal passengers, aurora-B kinase, inner centromere protein (INCENP), and survivin, are essential proteins that have been implicated in the regulation of metaphase chromosome alignment, spindle checkpoint function, and cytokinesis. All three share a common pattern of localization, and it was recently demonstrated that aurora-B, INCENP, and survivin are present in a complex in Xenopus eggs and Saccharomyces cerevisiae. The presence of aurora-B kinase in the complex and its ability to bind the other components directly suggest that INCENP and survivin could potentially be aurora-B substrates. This hypothesis was recently proven for INCENP in vitro. Here we report that human survivin is specifically phosphorylated in vitro by aurora-B kinase at threonine 117 in its carboxyl alpha-helical coil. Mutation of threonine 117 to alanine prevents survivin phosphorylation by aurora-B in vitro but does not alter its localization in HeLa cells. By contrast, a phospho-mimic, in which threonine 117 was mutated to glutamic acid, was unable to localize correctly at any stage in mitosis. Mutation at threonine 117 also prevented immunoprecipitation of INCENP with survivin in vivo. These data suggest that phosphorylation of survivin at threonine 117 by aurora-B may regulate targeting of survivin, and possibly the entire passenger complex, in mammals.
染色体乘客蛋白,如极光B激酶、着丝粒内部蛋白(INCENP)和生存素,是重要的蛋白质,它们与中期染色体排列、纺锤体检查点功能及胞质分裂的调控有关。这三种蛋白都有共同的定位模式,最近研究表明,在非洲爪蟾卵母细胞和酿酒酵母中,极光B、INCENP和生存素以复合物形式存在。复合物中存在极光B激酶且它能直接结合其他组分,这表明INCENP和生存素可能是极光B的底物。最近这一假说在体外实验中已得到证实。在此我们报告,在体外,人源生存素在其羧基α-螺旋卷曲结构域的苏氨酸117位点被极光B激酶特异性磷酸化。将苏氨酸117突变为丙氨酸可阻止体外实验中极光B对生存素的磷酸化作用,但不会改变其在HeLa细胞中的定位。相比之下,将苏氨酸117突变为谷氨酸的模拟磷酸化突变体在有丝分裂的任何阶段都无法正确定位。苏氨酸117位点的突变也会阻止体内实验中INCENP与生存素的免疫共沉淀。这些数据表明,在哺乳动物中,极光B对生存素苏氨酸117位点的磷酸化可能会调控生存素以及可能整个乘客蛋白复合物的靶向定位。