Department of Biological Sciences, University of Toledo, 2801 W. Bancroft Street, MS 601, Toledo, OH, 43606, USA.
Department of Biological Sciences, University of Toledo, 2801 W. Bancroft Street, MS 601, Toledo, OH, 43606, USA.
Exp Cell Res. 2022 Apr 15;413(2):113063. doi: 10.1016/j.yexcr.2022.113063. Epub 2022 Feb 12.
C9ORF78 is a poorly characterized protein found in diverse eukaryotes. Previous work indicated overexpression of C9ORF78 in malignant tissues indicating a possible involvement in growth regulatory pathways. Additional studies in fission yeast and humans uncover a potential function in regulating the spliceosome. In studies of GFP-tagged C9ORF78 we observed a dramatic reduction in protein abundance in cells grown to confluence and/or deprived of serum growth factors. Serum stimulation induced synchronous re-expression of the protein in HeLa cells. This effect was also observed with the endogenous protein. Overexpressing either E2F1 or N-Myc resulted in elevated C9ORF78 expression potentially explaining the serum-dependent upregulation of the protein. Immunofluorescence analysis indicates that C9ORF78 localizes to nuclei in interphase but does not appear to concentrate in speckles as would be expected for a splicing protein. Surprisingly, a subpopulation of C9ORF78 co-localizes with ACA, Mad1 and Ndc80 in mitotic cells suggesting that this protein associates with kinetochores or centromeres. Levels of C9ORF78 at the centromere/kinetochore also increased upon activation of the mitotic checkpoint. Furthermore, knocking-down C9ORF78 caused mitotic defects. These studies uncover novel mitotic function and subcellular localization of C9ORF78.
C9ORF78 是一种在多种真核生物中发现的特征不明显的蛋白质。以前的工作表明,C9ORF78 在恶性组织中的过度表达表明其可能参与了生长调节途径。裂殖酵母和人类的进一步研究揭示了其在调节剪接体方面的潜在功能。在 GFP 标记的 C9ORF78 的研究中,我们观察到在细胞生长到汇合和/或缺乏血清生长因子时,蛋白质丰度显著降低。血清刺激诱导 HeLa 细胞中蛋白质的同步重新表达。内源性蛋白质也观察到这种效应。过表达 E2F1 或 N-Myc 会导致 C9ORF78 表达升高,这可能解释了该蛋白质对血清的依赖性上调。免疫荧光分析表明,C9ORF78 在有丝分裂间期定位于核内,但似乎不会像剪接蛋白那样集中在斑点中。令人惊讶的是,C9ORF78 的亚群与 ACA、Mad1 和 Ndc80 在有丝分裂细胞中共定位,表明该蛋白质与动粒或着丝粒相关。有丝分裂检查点激活后,着丝粒/动粒处的 C9ORF78 水平也增加。此外,敲低 C9ORF78 会导致有丝分裂缺陷。这些研究揭示了 C9ORF78 的新有丝分裂功能和亚细胞定位。