Ferreira Jorge, Stear Jeffrey H, Saumweber Harald
Cytogenetics group, Institute of Biology, Humboldt-Universität zu Berlin, Chausseestr. 117, Berlin 10115, Germany
University of New South Wales, School of Medical Sciences, Sydney, New South Wales 2052, Australia.
J Cell Sci. 2017 Mar 1;130(5):963-974. doi: 10.1242/jcs.196709. Epub 2017 Jan 25.
Centromeres form a chromosomal platform for the assembly of the kinetochores, which are required for orderly chromosome segregation. Assembly of both centromeres and kinetochores proceeds by a step-by-step mechanism that is regulated in time and space. It has been suggested that the regulated nuclear import of centromeric proteins is involved in this process. We show that the knockdown of nucleoporins NPP-10, NPP-13 and NPP-20 in affects early steps in centromere formation and sister centromere resolution, and results in severe chromosomal defects in the early embryo. These phenotypes mirror the knockdown phenotype of HCP-4 (an ortholog of mammalian CENP-C), a key factor for centromere formation and inner kinetochore assembly. HCP-4 is present in the cytoplasm during interphase. It is imported into nuclei and assembled in centromeres during prophase. Following the knockdown of NPP-10, NPP-13 and NPP-20, HCP-4 remains in the cytosol throughout prophase due to stalled import. In prometaphase and later mitotic stages after breakdown of the nuclear envelope, HCP-4 is not incorporated into centromeres. These results indicate that correct timing of the availability of HCP-4 by nuclear import is essential.
着丝粒形成了用于动粒组装的染色体平台,而动粒是有序染色体分离所必需的。着丝粒和动粒的组装通过一种在时间和空间上受到调控的逐步机制进行。有人提出,着丝粒蛋白的核输入调控参与了这一过程。我们发现,在[具体生物]中敲低核孔蛋白NPP - 10、NPP - 13和NPP - 20会影响着丝粒形成和姐妹着丝粒分离的早期步骤,并导致早期胚胎出现严重的染色体缺陷。这些表型与HCP - 4(哺乳动物CENP - C的直系同源物)的敲低表型相似,HCP - 4是着丝粒形成和内动粒组装的关键因子。HCP - 4在间期存在于细胞质中。在前期它被导入细胞核并组装在着丝粒中。在敲低NPP - 10、NPP - 13和NPP - 20后,由于导入受阻,HCP - 4在整个前期都保留在细胞质中。在核膜破裂后的前中期及随后的有丝分裂阶段,HCP - 4没有被整合到着丝粒中。这些结果表明,通过核输入使HCP - 4适时可用是至关重要的。