Lineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599-7295, USA.
Department of Pharmacology, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599-7295, USA.
Mol Cell. 2014 Jun 5;54(5):791-804. doi: 10.1016/j.molcel.2014.03.047. Epub 2014 May 1.
CUL7, OBSL1, and CCDC8 genes are mutated in a mutually exclusive manner in 3M and other growth retardation syndromes. The mechanism underlying the function of the three 3M genes in development is not known. We found that OBSL1 and CCDC8 form a complex with CUL7 and regulate the level and centrosomal localization of CUL7, respectively. CUL7 depletion results in altered microtubule dynamics, prometaphase arrest, tetraploidy, and mitotic cell death. These defects are recaptured in CUL7 mutated 3M cells and can be rescued by wild-type, but not by 3M patient-derived CUL7 mutants. Depletion of either OBSL1 or CCDC8 results in defects and sensitizes cells to microtubule damage similarly to loss of CUL7 function. Microtubule damage reduces the level of CCDC8 that is required for the centrosomal localization of CUL7. We propose that CUL7, OBSL1, and CCDC8 proteins form a 3M complex that functions in maintaining microtubule and genome integrity and normal development.
CUL7、OBSL1 和 CCDC8 基因在 3M 和其他生长迟缓综合征中以相互排斥的方式发生突变。这三个 3M 基因在发育中的功能机制尚不清楚。我们发现 OBSL1 和 CCDC8 与 CUL7 形成复合物,并分别调节 CUL7 的水平和中心体定位。CUL7 的耗竭导致微管动力学改变、早中期阻滞、四倍体和有丝分裂细胞死亡。这些缺陷在 CUL7 突变的 3M 细胞中被重新捕获,野生型可以挽救,但 3M 患者来源的 CUL7 突变体不能挽救。OBSL1 或 CCDC8 的耗竭导致缺陷,并使细胞对微管损伤敏感,类似于 CUL7 功能的丧失。微管损伤降低了 CCDC8 的水平,而 CCDC8 是 CUL7 中心体定位所必需的。我们提出,CUL7、OBSL1 和 CCDC8 蛋白形成一个 3M 复合物,在维持微管和基因组完整性以及正常发育中发挥作用。