Skp1型
德隆
F盒蛋白
泛素连接酶
泛素
DDB1型
蛋白质降解
细胞生物学
细胞周期
小干扰RNA
DNA修复
生物
细胞周期蛋白
DNA损伤
泛素结合酶
细胞分裂控制蛋白4
癌症研究
化学
分子生物学
细胞
遗传学
DNA
核糖核酸
基因
作者
Yunzhe Lu,Jiezhi Li,Dongmei Cheng,Balaji Parameswaran,Shaohua Zhang,Zefei Jiang,P. Renée Yew,Junmin Peng,Qinong Ye,Yanfen Hu
标识
DOI:10.1074/jbc.m112.407106
摘要
BRCA1 mutations account for a significant proportion of familial breast and ovarian cancers. In addition, reduced BRCA1 protein is associated with sporadic cancer cases in these tissues. At the cellular level, BRCA1 plays a critical role in multiple cellular functions such as DNA repair and cell cycle checkpoint control. Its protein level is regulated in a cell cycle-dependent manner. However, regulation of BRCA1 protein stability is not fully understood. Our earlier study showed that the amino terminus of BRCA1 harbors a degron sequence that is sufficient and necessary for conferring BRCA1 degradation. In the current study, we used mass spectrometry to identify Skp1 that regulates BRCA1 protein stability. Small interfering RNA screening that targets all human F-box proteins uncovered FBXO44 as an important protein that influences BRCA1 protein level. The Skp1-Cul1-F-box-protein44 (SCF(FBXO44)) complex ubiquitinates full-length BRCA1 in vitro. Furthermore, the N terminus of BRCA1 mediates the interaction between BRCA1 and FBXO44. Overexpression of SCF(FBXO44) reduces BRCA1 protein level. Taken together, our work strongly suggests that SCF(FBXO44) is an E3 ubiquitin ligase responsible for BRCA1 degradation. In addition, FBXO44 expression pattern in breast carcinomas suggests that SCF(FBXO44)-mediated BRCA1 degradation might contribute to sporadic breast tumor development.
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