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首页> 外文期刊>Cell death & disease. >Inhibition of the deubiquitinase USP5 leads to c-Maf protein degradation and myeloma cell apoptosis
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Inhibition of the deubiquitinase USP5 leads to c-Maf protein degradation and myeloma cell apoptosis

机译:去泛素酶USP5的抑制导致c-Maf蛋白降解和骨髓瘤细胞凋亡

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摘要

The deubiquitinase USP5 stabilizes c-Maf, a key transcription factor in multiple myeloma (MM), but the mechanisms and significance are unclear. In the present study, USP5 was found to interact with c-Maf and prevented it from degradation by decreasing its polyubiquitination level. Specifically, the 308th and 347th lysine residues in c-Maf were critical for USP5-mediated deubiquitination and stability. There are five key domains in the USP5 protein and subsequent studies revealed that the cryptic ZnF domain and the C-box domain interacted with c-Maf but the UBA1/UBA2 domain partly increased its stability. Notably, MafA and MafB are also members of the c-Maf family, however, USP5 failed to deubiquitinate MafA, suggesting its substrate specificity. In the functional studies, USP5 was found to promoted the transcriptional activity of c-Maf. Consistent with the high level of c-Maf protein in MM cells, USP5 was also highly expressed. When USP5 was knocked down, c-Maf underwent degradation. Interestingly, USP5 silence led to apoptosis of MM cells expressing c-Maf but not MM cells lacking c-Maf, indicating c-Maf is a key factor in USP5-mediated MM cell proliferation and survival. Consistent with this finding, WP1130, an inhibitor of several Dubs including USP5, suppressed the transcriptional activity of c-Maf and induced MM cell apoptosis. When c-Maf was overexpressed, WP1130-induced MM cell apoptosis was abolished. Taken together, these findings suggest that USP5 regulates c-Maf stability and MM cell survival. Targeting the USP5/c-Maf axis could be a potential strategy for MM treatment.
机译:去泛素酶USP5可稳定多发性骨髓瘤(MM)中的关键转录因子c-Maf,但其机制和意义尚不清楚。在本研究中,发现USP5与c-Maf相互作用,并通过降低其多聚泛素化水平防止其降解。具体来说,c-Maf中的308和347位赖氨酸残基对于USP5介导的去泛素化和稳定性至关重要。 USP5蛋白中有五个关键结构域,随后的研究表明,隐蔽的ZnF结构域和C-box结构域与c-Maf相互作用,但UBA1 / UBA2结构域部分提高了其稳定性。值得注意的是,MafA和MafB也是c-Maf家族的成员,但是,USP5无法使MafA去泛素化,表明其底物特异性。在功能研究中,发现USP5可以促进c-Maf的转录活性。与MM细胞中高水平的c-Maf蛋白一致,USP5也被高表达。当USP5被击倒时,c-Maf发生降解。有趣的是,USP5沉默导致表达c-Maf的MM细胞凋亡,但缺少c-Maf的MM细胞没有凋亡,这表明c-Maf是USP5介导的MM细胞增殖和存活的关键因素。与此发现一致的是,WP1130是包括USP5在内的几种Dubs的抑制剂,可抑制c-Maf的转录活性并诱导MM细胞凋亡。当c-Maf过表达时,WP1130诱导的MM细胞凋亡被消除。综上所述,这些发现表明USP5调节c-Maf稳定性和MM细胞存活。瞄准USP5 / c-Maf轴可能是MM治疗的潜在策略。

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