He Fengjuan, Lu Defen, Jiang Baichun, Wang Yan, Liu Qiao, Liu Qiji, Shao Changshun, Li Xi, Gong Yaoqin
Institute of Medical Genetics, Shandong University School of Medicine, Jinan, Shandong, China.
Biochim Biophys Acta. 2013 May;1832(5):595-605. doi: 10.1016/j.bbadis.2013.01.015. Epub 2013 Jan 26.
Cullin 4B (CUL4B) is a scaffold protein involved in the assembly of cullin-RING ubiquitin ligase (E3) complexes. Contemporary reports have identified multiple mutations of CUL4B gene as being causally associated with X-linked intellectual disability (XLID). Identifying the specific protein substrates will help to better understand the physiological functions of CUL4B. The current study identified Jun activation domain-binding protein (Jab1/CSN5) in the COP9 signalosome (CSN) complex as a novel proteolytic target for the CUL4B ubiquitin ligase complex. The impaired degradation of Jab1 was observed in cells after RNAi-mediated CUL4B depletion. Integrity of DDB1-CUL4B-ROC1 was further demonstrated to be indispensable for the degradation of Jab1. In addition, the degradation of Jab1 is independent of CUL4A, a cullin family member closely related to CUL4B. In vitro and in vivo ubiquitination assays revealed that CUL4B promoted the polyubiquitination of Jab1. Interestingly, CUL4B-silenced cells were shown to exhibit abnormal upregulation of bone morphogenetic protein (BMP) signaling. Furthermore, in vivo studies of embryonic fibroblasts in Cul4b-deficient mice demonstrated Jab1 accumulation and increased activation of the BMP signaling pathway. Together, the current findings demonstrate the CUL4B E3 ubiquitin ligase plays a key role in targeting Jab1 for degradation, potentially revealing a previously undocumented mechanism for regulation of the BMP signaling pathway involved with the CUL4B-based E3 complex. This observation may provide novel insights into the molecular mechanisms underlying CUL4B-associated XLID pathogenesis.
Cullin 4B(CUL4B)是一种支架蛋白,参与cullin-RING泛素连接酶(E3)复合物的组装。当代报告已确定CUL4B基因的多个突变与X连锁智力障碍(XLID)存在因果关系。确定特定的蛋白质底物将有助于更好地理解CUL4B的生理功能。当前的研究确定COP9信号小体(CSN)复合物中的Jun激活域结合蛋白(Jab1/CSN5)是CUL4B泛素连接酶复合物的一种新型蛋白水解靶点。在RNAi介导的CUL4B缺失后,在细胞中观察到Jab1的降解受损。进一步证明DDB1-CUL4B-ROC1的完整性对于Jab1的降解是不可或缺的。此外,Jab1的降解独立于CUL4A,CUL4A是与CUL4B密切相关的一种cullin家族成员。体外和体内泛素化分析表明,CUL4B促进了Jab1的多聚泛素化。有趣的是,CUL4B沉默的细胞显示出骨形态发生蛋白(BMP)信号异常上调。此外,对Cul4b缺陷小鼠胚胎成纤维细胞的体内研究表明Jab1积累且BMP信号通路的激活增加。总之,当前的研究结果表明CUL4B E3泛素连接酶在靶向Jab1进行降解中起关键作用,这可能揭示了一种以前未记录的与基于CUL4B的E3复合物相关的调节BMP信号通路的机制。这一观察结果可能为CUL4B相关XLID发病机制的分子机制提供新的见解。