Bharadwaj Rajnish, Qi Wei, Yu Hongtao
Department of Pharmacology, University of Texas Southwestern Medical Center, 5323 Harry Hines Boulevard, Dallas, TX 75390, USA.
J Biol Chem. 2004 Mar 26;279(13):13076-85. doi: 10.1074/jbc.M310224200. Epub 2003 Dec 29.
Proper kinetochore function is essential for the accurate segregation of chromosomes during mitosis. Kinetochores provide the attachment sites for spindle microtubules and are required for the alignment of chromosomes at the metaphase plate (chromosome congression). Components of the conserved NDC80 complex are required for chromosome congression, and their disruption results in mitotic arrest accompanied by multiple spindle aberrations. To better understand the function of the NDC80 complex, we have identified two novel subunits of the human NDC80 complex, termed human SPC25 (hSPC25) and human SPC24 (hSPC24), using an immunoaffinity approach. hSPC25 interacted with HEC1 (human homolog of yeast Ndc80) throughout the cell cycle and localized to kinetochores during mitosis. RNA interference-mediated depletion of hSPC25 in HeLa cells caused aberrant mitosis, followed by cell death, a phenotype similar to that of cells depleted of HEC1. Loss of hSPC25 also caused multiple spindle aberrations, including elongated, multipolar, and fractured spindles. In the absence of hSPC25, MAD1 and HEC1 failed to localize to kinetochores during mitosis, whereas the kinetochore localization of BUB1 and BUBR1 was largely unaffected. Interestingly, the kinetochore localization of MAD1 in cells with a compromised NDC80 function was restored upon microtubule depolymerization. Thus, hSPC25 is an essential kinetochore component that plays a significant role in proper execution of mitotic events.
在有丝分裂过程中,正确的动粒功能对于染色体的精确分离至关重要。动粒为纺锤体微管提供附着位点,是染色体在中期板排列(染色体列队)所必需的。保守的NDC80复合体的组分是染色体列队所必需的,其破坏会导致有丝分裂停滞并伴有多种纺锤体畸变。为了更好地理解NDC80复合体的功能,我们使用免疫亲和方法鉴定了人类NDC80复合体的两个新亚基,分别称为人类SPC25(hSPC25)和人类SPC24(hSPC24)。hSPC25在整个细胞周期中都与HEC1(酵母Ndc80的人类同源物)相互作用,并在有丝分裂期间定位于动粒。RNA干扰介导的HeLa细胞中hSPC25的缺失导致异常有丝分裂,随后细胞死亡,这一表型与HEC1缺失的细胞相似。hSPC25的缺失还导致多种纺锤体畸变,包括纺锤体拉长、多极和断裂。在没有hSPC25的情况下,MAD1和HEC1在有丝分裂期间无法定位于动粒,而BUB1和BUBR1的动粒定位在很大程度上不受影响。有趣的是,在微管解聚后,NDC80功能受损的细胞中MAD1的动粒定位得以恢复。因此,hSPC25是一种必需的动粒组分,在有丝分裂事件的正确执行中发挥着重要作用。