Bleichert Franziska, Balasov Maxim, Chesnokov Igor, Nogales Eva, Botchan Michael R, Berger James M
Miller Institute for Basic Research in Science , University of California, Berkeley , Berkeley , United States ; Department of Molecular and Cell Biology , University of California, Berkeley , Berkeley , United States.
Elife. 2013 Oct 8;2:e00882. doi: 10.7554/eLife.00882.
In eukaryotes, DNA replication requires the origin recognition complex (ORC), a six-subunit assembly that promotes replisome formation on chromosomal origins. Despite extant homology between certain subunits, the degree of structural and organizational overlap between budding yeast and metazoan ORC has been unclear. Using 3D electron microscopy, we determined the subunit organization of metazoan ORC, revealing that it adopts a global architecture very similar to the budding yeast complex. Bioinformatic analysis extends this conservation to Orc6, a subunit of somewhat enigmatic function. Unexpectedly, a mutation in the Orc6 C-terminus linked to Meier-Gorlin syndrome, a dwarfism disorder, impedes proper recruitment of Orc6 into ORC; biochemical studies reveal that this region of Orc6 associates with a previously uncharacterized domain of Orc3 and is required for ORC function and MCM2-7 loading in vivo. Together, our results suggest that Meier-Gorlin syndrome mutations in Orc6 impair the formation of ORC hexamers, interfering with appropriate ORC functions. DOI:http://dx.doi.org/10.7554/eLife.00882.001.
在真核生物中,DNA复制需要起始识别复合物(ORC),这是一种由六个亚基组成的装配体,可促进染色体起始位点上复制体的形成。尽管某些亚基之间存在现存的同源性,但芽殖酵母和后生动物ORC之间的结构和组织重叠程度尚不清楚。利用三维电子显微镜,我们确定了后生动物ORC的亚基组织,发现它采用了与芽殖酵母复合物非常相似的整体结构。生物信息学分析将这种保守性扩展到了Orc6,一个功能有些神秘的亚基。出乎意料的是,与侏儒症疾病迈耶-戈林综合征相关的Orc6 C末端突变阻碍了Orc6正确招募到ORC中;生化研究表明,Orc6的这一区域与Orc3一个以前未被表征的结构域相关联,并且是体内ORC功能和MCM2 - 7装载所必需的。总之,我们的结果表明,Orc6中的迈耶-戈林综合征突变会损害ORC六聚体的形成,干扰ORC的正常功能。DOI:http://dx.doi.org/10.7554/eLife.00882.001