Department of Medical Photobiology, Photon Medical Research Center, Hamamatsu University School of Medicine, Higashi-ku, Japan.
Genomics. 2010 Aug;96(2):102-11. doi: 10.1016/j.ygeno.2010.05.003. Epub 2010 May 24.
YPEL5 is a member of the YPEL gene family that is highly conserved in the eukaryotic species and apparently involved in a certain cell division-related function. In this study, we examined the functional and phylogenetic aspects of YPEL5 protein in more detail. During cell cycle, YPEL5 protein was detected at different subcellular localizations; at interphase, it was located in the nucleus and centrosome, then it changed location sequentially to spindle poles, mitotic spindle, and spindle midzone during mitosis, and finally transferred to midbody at cytokinesis. Knockdown of YPEL5 function by siRNA or anti-sense morpholino oligonucleotide inhibited the growth of cultured COS-7 cells and early development of medaka fish embryos, indicating its involvement in cell cycle progression. Interestingly, RanBPM (Ran Binding Protein in the Microtubule organizing center, encoded by RANBP9) was identified as a YPEL5-binding protein by yeast two-hybrid method. A paralog of RanBPM, namely RanBP10 (encoded by RANBP10), was found to be another YPEL5-binding protein, and these two protein genes are highly conserved each other. Comparative genomic analysis allowed us to define a new gene family consisting of RanBPM and RanBP10, named Scorpin, providing a basis to better understand how they interact with YPEL5.
YPEL5 是 YPEL 基因家族的成员,在真核生物中高度保守,显然与某种细胞分裂相关的功能有关。在本研究中,我们更详细地研究了 YPEL5 蛋白的功能和系统发育方面。在细胞周期中,YPEL5 蛋白在不同的亚细胞定位中被检测到;在间期,它位于细胞核和中心体,然后在有丝分裂期间依次改变位置到纺锤体极、有丝分裂纺锤体和纺锤体中间区,最后在胞质分裂时转移到中间体。siRNA 或反义吗啉代寡核苷酸敲低 YPEL5 功能会抑制培养的 COS-7 细胞的生长和日本青鳉鱼胚胎的早期发育,表明其参与细胞周期进程。有趣的是,RanBPM(微管组织中心的 Ran 结合蛋白,由 RANBP9 编码)通过酵母双杂交方法被鉴定为 YPEL5 结合蛋白。RanBPM 的一个旁系同源物,即 RanBP10(由 RANBP10 编码),被发现是另一个 YPEL5 结合蛋白,这两个蛋白基因彼此高度保守。比较基因组分析使我们能够定义一个由 RanBPM 和 RanBP10 组成的新基因家族,命名为 Scorpin,为更好地理解它们如何与 YPEL5 相互作用提供了基础。