Chesnokov Igor N, Chesnokova Olga N, Botchan Michael
Department of Biochemistry and Molecular Genetics, University of Alabama at Birmingham School of Medicine, Birmingham, AL 35294, USA.
Proc Natl Acad Sci U S A. 2003 Aug 5;100(16):9150-5. doi: 10.1073/pnas.1633580100. Epub 2003 Jul 23.
Coordination between separate pathways may be facilitated by the requirements for common protein factors, a finding congruent with the link between proteins regulating DNA replication with other important cellular processes. We report that the smallest of Drosophila origin recognition complex subunits, Orc6, was found in embryos and cell culture localized to the cell membrane and cleavage furrow during cell division as well as in the nucleus. A two-hybrid screen revealed that Orc6 interacts with the Drosophila peanut (pnut), a member of the septin family of proteins important for cell division. This interaction, mediated by a distinct C-terminal domain of Orc6, was substantiated in Drosophila cells by coimmunoprecipitation from extracts and cytological methods. Silencing of Orc6 expression with double-stranded RNA resulted in a formation of multinucleated cells and also reduced DNA replication. Deletion of the C-terminal Orc6-peanut interaction domain and subsequent overexpression of the Orc6 mutant protein resulted in the formation of multinucleated cells that had replicated DNA. This mutant protein does not localize to the membrane or cleavage furrows. These results suggest that Orc6 has evolved a domain critical mainly for cytokinesis.
不同途径之间的协调可能因对共同蛋白质因子的需求而得到促进,这一发现与调节DNA复制的蛋白质与其他重要细胞过程之间的联系相一致。我们报告称,果蝇起源识别复合体最小的亚基Orc6,在胚胎和细胞培养中被发现,在细胞分裂期间定位于细胞膜和分裂沟以及细胞核中。一项双杂交筛选显示,Orc6与果蝇花生蛋白(pnut)相互作用,pnut是对细胞分裂很重要的septin蛋白家族的成员。这种相互作用由Orc6独特的C末端结构域介导,通过从提取物中进行共免疫沉淀和细胞学方法在果蝇细胞中得到证实。用双链RNA沉默Orc6的表达会导致多核细胞的形成,并且还会减少DNA复制。删除C末端Orc6-花生蛋白相互作用结构域并随后过表达Orc6突变蛋白会导致已复制DNA的多核细胞的形成。这种突变蛋白不会定位于细胞膜或分裂沟。这些结果表明,Orc6已经进化出一个主要对胞质分裂至关重要的结构域。