Proteasomal deubiquitinase UCH37 inhibits degradation of β-catenin and promotes cell proliferation and motility

脱氮酶 泛素 蛋白酶体 细胞生物学 转录因子 生物 泛素连接酶 运动性 效应器 内体 德隆 受体 生物化学 基因
作者
Zijian Li,Luming Zhou,Tian-Xia Jiang,Libin Fan,Xiaoying Liu,Xiao‐Bo Qiu
出处
期刊:Acta Biochimica et Biophysica Sinica [Oxford University Press]
卷期号:51 (3): 277-284 被引量:13
标识
DOI:10.1093/abbs/gmy176
摘要

The ubiquitin-proteasome system degrades most cellular proteins in eukaryotes. UCH37, also known as UCH-L5, is a deubiquitinase binding to Rpn13, a receptor for ubiquitinated substrates in the 26 S proteasome. But, it remains unclear how UCH37 influences the proteasomal degradation of the ubiquitinated substrates. Because deletion of UCH37 is embryonically lethal in mice, this study aims to investigate the role of UCH37 in proteasomal degradation by constructing the UCH37-deficient cell lines using CRISPR/Cas9 technology. Our results demonstrated that deletion of UCH37 decreased the levels of proteasomal Rpn13, implying that UCH37 might facilitate incorporation of Rpn13 into the proteasome. Meanwhile, deletion of UCH37 decreased the levels of β-catenin and the early endosomal protein Rab8. β-Catenin interacts with TCF/LEF to control transcription, and is involved in development, tissue homeostasis and tumorigenesis. We further found that deletion of UCH37 increased the levels of the ubiquitinated β-catenin and accelerated the hydrogen peroxide-stimulated degradation of β-catenin. Deletion of UCH37 also down-regulated the transcription of c-Myc, a downstream effector of β-catenin, and inhibited cell proliferation and motility. These results raise the possibility that UCH37 maintains the homeostasis of proteasomal degradation reciprocally by assisting the recruitment of the ubiquitin receptor Rpn13 into the proteasome and by reversing ubiquitination of certain critical substrates of the 26 S proteasome.
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