Orr Bernardo, Sunkel Claudio E
Instituto de Biologia Molecular e Celular, Universidade do Porto, Rua do Campo Alegre 823, 4150-180 Porto, Portugal.
Chromosoma. 2011 Feb;120(1):83-96. doi: 10.1007/s00412-010-0293-6. Epub 2010 Sep 23.
Centromeres are specialized chromosomal domains that direct mitotic kinetochore assembly and are defined by the presence of CENP-A (CID in Drosophila) and CENP-C. While the role of CENP-A appears to be highly conserved, functional studies in different organisms suggest that the precise role of CENP-C in kinetochore assembly is still under debate. Previous studies in vertebrate cells have shown that CENP-C inactivation causes mitotic delay, chromosome missegregation, and apoptosis; however, in Drosophila, the role of CENP-C is not well-defined. We have used RNA interference depletion in S2 cells to address this question and we find that depletion of CENP-C causes a kinetochore null phenotype, and consequently, the spindle checkpoint, kinetochore-microtubule interactions, and spindle size are severely misregulated. Importantly, we show that CENP-C is required for centromere identity as CID, MEI-S332, and chromosomal passenger proteins fail to localize in CENP-C depleted cells, suggesting a tight communication between the inner kinetochore proteins and centromeres. We suggest that CENP-C might fulfill the structural roles of the human centromere-associated proteins not identified in Drosophila.
着丝粒是特殊的染色体结构域,可指导有丝分裂动粒组装,由CENP-A(果蝇中的CID)和CENP-C的存在所定义。虽然CENP-A的作用似乎高度保守,但不同生物体中的功能研究表明,CENP-C在动粒组装中的精确作用仍存在争议。先前在脊椎动物细胞中的研究表明,CENP-C失活会导致有丝分裂延迟、染色体错分离和细胞凋亡;然而,在果蝇中,CENP-C的作用尚不明确。我们利用RNA干扰在S2细胞中耗尽CENP-C来解决这个问题,发现CENP-C的耗尽会导致动粒缺失表型,因此,纺锤体检查点、动粒-微管相互作用和纺锤体大小都受到严重失调。重要的是,我们表明CENP-C是着丝粒身份所必需的,因为CID、MEI-S332和染色体乘客蛋白在CENP-C耗尽的细胞中无法定位,这表明内动粒蛋白和着丝粒之间存在紧密的通讯。我们认为CENP-C可能履行了在果蝇中未发现的人类着丝粒相关蛋白的结构作用。