Desai Arshad, Rybina Sonja, Müller-Reichert Thomas, Shevchenko Andrej, Shevchenko Anna, Hyman Anthony, Oegema Karen
Max Planck Institute for Molecular Cell Biology and Genetics (MPI-CBG), Dresden 01307, Germany.
Genes Dev. 2003 Oct 1;17(19):2421-35. doi: 10.1101/gad.1126303.
Segregation of the replicated genome during cell division requires kinetochores, mechanochemical organelles that assemble on mitotic chromosomes to connect them to spindle microtubules. CENP-A, a histone H3 variant, and CENP-C, a conserved structural protein, form the DNA-proximal foundation for kinetochore assembly. Using RNA interference-based genomics in Caenorhabditis elegans, we identified KNL-1, a novel kinetochore protein whose depletion, like that of CeCENP-A or CeCENP-C, leads to a "kinetochore-null" phenotype. KNL-1 is downstream of CeCENP-A and CeCENP-C in a linear assembly hierarchy. In embryonic extracts, KNL-1 exhibits substoichiometric interactions with CeCENP-C and forms a near-stoichiometric complex with CeNDC-80 and HIM-10, the C. elegans homologs of Ndc80p/HEC1p and Nuf2p-two widely conserved outer kinetochore components. However, CeNDC-80 and HIM-10 are not functionally equivalent to KNL-1 because their inhibition, although preventing formation of a mechanically stable kinetochore-microtubule interface and causing chromosome missegregation, does not result in a kinetochore-null phenotype. The greater functional importance of KNL-1 may be due to its requirement for targeting multiple components of the outer kinetochore, including CeNDC-80 and HIM-10. Thus, KNL-1 plays a central role in translating the initiation of kinetochore assembly by CeCENP-A and CeCENP-C into the formation of a functional microtubule-binding interface.
在细胞分裂过程中,复制后的基因组的分离需要动粒,动粒是一种机械化学细胞器,它组装在有丝分裂染色体上,将染色体与纺锤体微管相连。着丝粒蛋白A(CENP-A)是一种组蛋白H3变体,着丝粒蛋白C(CENP-C)是一种保守的结构蛋白,它们构成了动粒组装的DNA近端基础。利用基于RNA干扰的基因组学技术,我们在秀丽隐杆线虫中鉴定出了一种新型动粒蛋白KNL-1,与秀丽隐杆线虫着丝粒蛋白A(CeCENP-A)或着丝粒蛋白C(CeCENP-C)缺失一样,该蛋白的缺失会导致“动粒缺失”表型。在一个线性组装层次结构中,KNL-1位于CeCENP-A和CeCENP-C的下游。在胚胎提取物中,KNL-1与CeCENP-C表现出亚化学计量的相互作用,并与CeNDC-80和HIM-10形成接近化学计量的复合物,CeNDC-80和HIM-10分别是Ndc80p/HEC1p和Nuf2p的秀丽隐杆线虫同源物,Ndc80p/HEC1p和Nuf2p是两个广泛保守的外动粒成分。然而,CeNDC-80和HIM-10在功能上与KNL-1并不等同,因为它们的抑制虽然会阻止形成机械稳定的动粒-微管界面并导致染色体错分离,但不会导致动粒缺失表型。KNL-1更大的功能重要性可能是由于它需要靶向外动粒的多个成分,包括CeNDC-80和HIM-10。因此,KNL-1在将CeCENP-A和CeCENP-C引发的动粒组装转化为功能性微管结合界面的形成过程中起着核心作用。