Liu Dan, Ding Xia, Du Jian, Cai Xin, Huang Yuejia, Ward Tarsha, Shaw Andrew, Yang Yong, Hu Renming, Jin Changjiang, Yao Xuebiao
Laboratory of Cellular Dynamics, University of Science and Technology of China and the National Laboratory for Physical Sciences, Hefei 230027, China.
J Biol Chem. 2007 Jul 20;282(29):21415-24. doi: 10.1074/jbc.M609026200. Epub 2007 May 29.
Chromosome segregation in mitosis is orchestrated by dynamic interaction between spindle microtubules and the kinetochore, a multiprotein complex assembled onto centromeric DNA of the chromosome. Here, we show that Homo sapiens (Hs) NUF2 is required for stable kinetochore localization of centromere-associated protein E (CENP-E) in HeLa cells. HsNUF2 specifies the kinetochore association of CENP-E by interacting with its C-terminal domain. The region of HsNUF2 binding to CENP-E was mapped to its C-terminal domain by glutathione S-transferase pulldown and yeast two-hybrid assays. Suppression of synthesis of HsNUF2 by small interfering RNA abrogated the localization of CENP-E to the kinetochore, demonstrating the requirement of HsNUF2 for CENP-E kinetochore localization. In addition, depletion of HsNUF2 caused aberrant chromosome segregation. These HsNUF2-suppressed cells displayed reduced tension at kinetochores of bi-orientated chromosomes. Double knockdown of CENP-E and HsNUF2 further abolished the tension at the kinetochores. Our results indicate that HsNUF2 and CENP-E are required for organization of stable microtubule-kinetochore attachment that is essential for faithful chromosome segregation in mitosis.
有丝分裂中的染色体分离是由纺锤体微管与动粒之间的动态相互作用所协调的,动粒是一种组装在染色体着丝粒DNA上的多蛋白复合体。在这里,我们表明人类(Hs)NUF2是HeLa细胞中着丝粒相关蛋白E(CENP-E)稳定定位于动粒所必需的。HsNUF2通过与其C末端结构域相互作用来确定CENP-E与动粒的结合。通过谷胱甘肽S-转移酶下拉实验和酵母双杂交实验,将HsNUF2与CENP-E结合的区域定位到其C末端结构域。用小干扰RNA抑制HsNUF2的合成消除了CENP-E在动粒上的定位,证明了HsNUF2对于CENP-E动粒定位的必要性。此外,HsNUF2的缺失导致异常的染色体分离。这些HsNUF2被抑制的细胞在双定向染色体的动粒处显示出张力降低。CENP-E和HsNUF2的双重敲低进一步消除了动粒处的张力。我们的结果表明,HsNUF2和CENP-E是稳定微管-动粒附着组织所必需的,而这对于有丝分裂中准确的染色体分离至关重要。