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首页> 外文期刊>Human Molecular Genetics >Human CENP-H multimers colocalize with CENP-A and CENP-C at active centromere--kinetochore complexes.
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Human CENP-H multimers colocalize with CENP-A and CENP-C at active centromere--kinetochore complexes.

机译:人类CENP-H多聚体与CENP-A和CENP-C共同定位在活性着丝粒-线粒体复合体上。

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Centromere and kinetochore proteins have a pivotal role in centromere structure, kinetochore formation and sister chromatid separation. However, the molecular architecture and the precise dynamic function of the centromere-kinetochore complex during mitosis remain poorly understood. Here we report the isolation and characterization of human CENP-H. Confocal microscopic analyses of HeLa cells with anti-human CENP-H-specific antibody demonstrated that CENP-H colocalizes with inner kinetochore plate proteins CENP-A and CENP-C in both interphase and metaphase. CENP-H was present outside centromeric heterochromatin, where CENP-B is localized, and inside the kinetochore corona, where CENP-E is localized during prometaphase. Furthermore, CENP-H was detected at neocentromeres, but not at inactive centromeres in stable dicentric chromosomes. In vitro binding assays of human CENP-H with centromere-kinetochore proteins suggest that the CENP-H binds to itself and MCAK, but not to CENP-A, CENP-B or CENP-C. CENP-H multimers were observed in cells in which both FLAG-tagged CENP-H and hemagglutinin-tagged CENP-H were expressed. These results suggest that CENP-H multimers localize constitutively to the inner kinetochore plate and play an important fundamental role in organization and function of the active human centromere-kinetochore complex.
机译:着丝粒和线粒体蛋白在着丝粒结构,线粒体形成和姐妹染色单体分离中起关键作用。然而,在有丝分裂过程中着丝粒-线粒体复合物的分子结构和精确的动态功能仍然知之甚少。在这里我们报告人类CENP H的分离和表征。用抗人CENP-H特异性抗体对HeLa细胞进行共聚焦显微镜分析表明,CENP-H在中期和中期均与内部动粒板蛋白CENP-A和CENP-C共定位。 CENP-H存在于着丝粒异染色质之外,CENP-B定位于此,而动粒体电晕内部,CENP-E处于前中期。此外,在稳定的双着丝粒染色体中,在新着丝粒处检测到CENP-H,而在不活跃着丝粒处未检测到。人CENP-H与着丝粒-线粒体蛋白的体外结合试验表明,CENP-H结合自身和MCAK,但不结合CENP-A,CENP-B或CENP-C。在表达FLAG标签的CENP-H和血凝素标签的CENP-H的细胞中观察到CENP-H多聚体。这些结果表明CENP-H多聚体组成性地定位到内部的线粒体板,并在活跃的人类着丝粒-线粒体复合物的组织和功能中发挥重要的基本作用。

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