Chen Yuezhou, Yang Zhenxiao, Meng Min, Zhao Yue, Dong Na, Yan Hongming, Liu Liping, Ding Mingxiao, Peng H Benjamin, Shao Feng
College of Life Science, Peking University, Beijing 100871, China.
Mol Cell. 2009 Sep 24;35(6):841-55. doi: 10.1016/j.molcel.2009.09.004.
Cul3, a Cullin family scaffold protein, is thought to mediate the assembly of a large number of SCF (Skp1-Cullin1-F-box protein)-like ubiquitin ligase complexes through BTB domain substrate-recruiting adaptors. Cul3 controls early embryonic development in several genetic models through mechanisms not understood. Very few functional substrate/adaptor pairs for Cul3 ubiquitin ligases have been identified. Here, we show that Cul3 knockdown in human cells results in abnormal actin stress fibers and distorted cell morphology, owing to impaired ubiquitination and degradation of small GTPase RhoA. We identify a family of RhoA-binding BTB domain adaptors conserved from insects to mammals, designated BACURDs. BACURDs form ubiquitin ligase complexes, which selectively ubiquitinate RhoA, with Cul3. Dysfunction of the Cul3/BACURD complex decreases cell migration potential and impairs RhoA-mediated convergent extension movements during Xenopus gastrulation. Our studies reveal a previously unknown mechanism for controlling RhoA degradation and regulating RhoA function in various biological contexts, which involves a Cul3/BACURD ubiquitin ligase complex.
Cul3是一种Cullin家族支架蛋白,被认为通过BTB结构域底物招募衔接蛋白介导大量SCF(Skp1-Cullin1-F-box蛋白)样泛素连接酶复合物的组装。在几种遗传模型中,Cul3通过未知机制控制早期胚胎发育。目前仅鉴定出极少数Cul3泛素连接酶的功能性底物/衔接蛋白对。在此,我们表明,在人类细胞中敲低Cul3会导致肌动蛋白应激纤维异常和细胞形态扭曲,这是由于小GTP酶RhoA的泛素化和降解受损所致。我们鉴定出了一个从昆虫到哺乳动物均保守的RhoA结合BTB结构域衔接蛋白家族,命名为BACURD。BACURD与Cul3形成泛素连接酶复合物,该复合物可选择性地使RhoA泛素化。Cul3/BACURD复合物功能失调会降低细胞迁移能力,并损害非洲爪蟾原肠胚形成过程中RhoA介导的汇聚延伸运动。我们的研究揭示了一种在各种生物学背景下控制RhoA降解和调节RhoA功能的前所未知的机制,该机制涉及Cul3/BACURD泛素连接酶复合物。