Jeyaprakash A Arockia, Klein Ulf R, Lindner Doris, Ebert Judith, Nigg Erich A, Conti Elena
Max-Planck-Institute of Biochemistry, Am Klopferspitz 18, D-82152 Martinsried, Germany.
Cell. 2007 Oct 19;131(2):271-85. doi: 10.1016/j.cell.2007.07.045.
The chromosomal passenger complex (CPC) is a key regulator of chromosome segregation and cytokinesis. CPC functions are connected to its localization. The complex first localizes to centromeres and later associates with the central spindle and midbody. Survivin, Borealin, and INCENP are the three components of the CPC that regulate the activity and localization of its enzymatic component, the kinase Aurora B. We determined the 1.4 A resolution crystal structure of the regulatory core of the CPC, revealing that Borealin and INCENP associate with the helical domain of Survivin to form a tight three-helical bundle. We used siRNA rescue experiments with structure-based mutants to explore the requirements for CPC localization. We show that the intertwined structural interactions of the core components lead to functional interdependence. Association of the core "passenger" proteins creates a single structural unit, whose composite molecular surface presents conserved residues essential for central spindle and midbody localization.
染色体乘客复合体(CPC)是染色体分离和胞质分裂的关键调节因子。CPC的功能与其定位相关。该复合体首先定位于着丝粒,随后与中央纺锤体和中间体结合。Survivin、Borealin和INCENP是CPC的三个组成部分,它们调节其酶组分激酶Aurora B的活性和定位。我们确定了CPC调节核心的1.4埃分辨率晶体结构,揭示Borealin和INCENP与Survivin的螺旋结构域结合形成紧密的三螺旋束。我们使用基于结构的突变体进行siRNA拯救实验,以探索CPC定位的要求。我们表明,核心组分的相互缠绕的结构相互作用导致功能上的相互依赖。核心“乘客”蛋白的结合形成了一个单一的结构单元,其复合分子表面呈现出对中央纺锤体和中间体定位至关重要的保守残基。