Kurasawa Yasuhiro, Earnshaw William C, Mochizuki Yuko, Dohmae Naoshi, Todokoro Kazuo
Cell Fate Signaling Research Unit, RIKEN (The Institute of Physical and Chemical Research), Wako, Saitama, Japan.
EMBO J. 2004 Aug 18;23(16):3237-48. doi: 10.1038/sj.emboj.7600347. Epub 2004 Aug 5.
A number of proteins accumulate in the anaphase spindle midzone, but the interaction and precise role of these proteins in midzone organization remain obscure. Here, we found that the microtubule-bundling protein PRC1 bound separately to the three motor proteins, KIF4, MKLP1 and CENP-E, but not to the chromosomal passenger proteins. In KIF4-deficient cells, the central spindle was disorganized, and all midzone-associated proteins including PRC1 failed to concentrate at the midline, instead being dispersed along the loosened microtubule bundles of the central spindle. This suggests that KIF4 is essential for the organization of central spindles and for midzone formation. In PRC1-deficient cells, no midzone was formed, KIF4 and CENP-E did not localize to the disconnected half-spindle, and MKLP1 and chromosomal passenger proteins localized to discrete subdomains near microtubule plus ends in the half-spindle. Thus, PRC1 is required for interaction of the two half-spindles and for localization of KIF4 and CENP-E. These results suggest that KIF4 and its binding partner PRC1 play essential roles in the organization of central spindles and midzone formation.
许多蛋白质在后期纺锤体中间区积累,但这些蛋白质在中间区组织中的相互作用和精确作用仍不清楚。在这里,我们发现微管成束蛋白PRC1分别与三种马达蛋白KIF4、MKLP1和CENP-E结合,但不与染色体乘客蛋白结合。在缺乏KIF4的细胞中,中央纺锤体紊乱,包括PRC1在内的所有中间区相关蛋白都未能集中在中线,而是沿着中央纺锤体松散的微管束分散。这表明KIF4对于中央纺锤体的组织和中间区形成至关重要。在缺乏PRC1的细胞中,没有形成中间区,KIF4和CENP-E没有定位于断开的半纺锤体,而MKLP1和染色体乘客蛋白定位于半纺锤体微管正端附近的离散亚结构域。因此,PRC1是两个半纺锤体相互作用以及KIF4和CENP-E定位所必需的。这些结果表明,KIF4及其结合伴侣PRC1在中央纺锤体的组织和中间区形成中起重要作用。