Wheatley S P, Carvalho A, Vagnarelli P, Earnshaw W C
Chromosome Structure Group, Institute of Cell and Molecular Biology, Swann Building, University of Edinburgh, King's Buildings, Mayfield Road, EH9 3JR, Edinburgh, United Kingdom.
Curr Biol. 2001 Jun 5;11(11):886-90. doi: 10.1016/s0960-9822(01)00238-x.
Three lines of investigation have suggested that interactions between Survivin and the chromosomal passenger proteins INCENP and Aurora-B kinase may be important for mitotic progression. First, interference with the function of Survivin/BIR1, INCENP, or Aurora-B kinase leads to similar defects in mitosis and cytokinesis [1-7] (see [8] for review). Second, INCENP and Aurora-B exist in a complex in Xenopus eggs [9] and in mammalian cultured cells [7]. Third, interference with Survivin or INCENP function causes Aurora-B kinase to be mislocalized in mitosis in both C. elegans and vertebrates [5, 7, 9]. Here, we provide evidence that Survivin, Aurora-B, and INCENP interact physically and functionally. Direct visualization of Survivin-GFP in mitotic cells reveals that it localizes identically to INCENP and Aurora-B. Survivin binds directly to both Aurora-B and INCENP in yeast two-hybrid and in vitro pull-down assays. The in vitro interaction between Survivin and Aurora-B is extraordinarily stable in that it resists 3 M NaCl. Finally, Survivin and INCENP interact functionally in vivo; in cells in which INCENP localization is disrupted, Survivin adheres to the chromosomes and no longer concentrates at the centromeres or transfers to the anaphase spindle midzone. Our data provide the first biochemical evidence that Survivin can interact directly with members of the chromosomal passenger complex.
三条研究线索表明,生存素(Survivin)与染色体乘客蛋白着丝粒蛋白(INCENP)和极光激酶B(Aurora - B kinase)之间的相互作用可能对有丝分裂进程至关重要。首先,干扰生存素/BIR1、着丝粒蛋白或极光激酶B的功能会导致有丝分裂和胞质分裂出现类似缺陷[1 - 7](综述见[8])。其次,着丝粒蛋白和极光激酶B在非洲爪蟾卵[9]和哺乳动物培养细胞中[7]以复合物形式存在。第三,干扰生存素或着丝粒蛋白的功能会导致极光激酶B在秀丽隐杆线虫和脊椎动物的有丝分裂中定位错误[5, 7, 9]。在此,我们提供证据表明生存素、极光激酶B和着丝粒蛋白在物理和功能上相互作用。对有丝分裂细胞中绿色荧光蛋白标记的生存素(Survivin - GFP)进行直接观察发现,其定位与着丝粒蛋白和极光激酶B完全相同。在酵母双杂交和体外下拉实验中,生存素直接与极光激酶B和着丝粒蛋白结合。生存素与极光激酶B的体外相互作用极其稳定,能抵抗3 M氯化钠。最后,生存素和着丝粒蛋白在体内功能上相互作用;在着丝粒蛋白定位被破坏的细胞中,生存素附着于染色体,不再集中于着丝粒或转移至后期纺锤体中间区。我们的数据提供了首个生化证据,证明生存素可直接与染色体乘客复合物的成员相互作用。