GRAIL1 stabilizes misfolded mutant p53 through a ubiquitin ligase-independent, chaperone regulatory function

突变体 泛素连接酶 伴侣(临床) 生物 细胞生物学 DNA连接酶 蛋白质折叠 突变蛋白 泛素 分子生物学 生物化学 基因 医学 病理
作者
P. C. Ray,Sangeeta Jaiswal,Daysha Ferrer-Torres,Zhuwen Wang,Derek J. Nancarrow,Meghan Curtin,May San Martinho,Shannon M. Lacy,Srimathi Kasturirangan,Dafydd G. Thomas,Jason R. Spence,Matthias C. Truttmann,Kiran H. Lagisetty,Theodore S. Lawrence,Thomas D. Wang,David G. Beer,Dipankar Ray
出处
期刊:Molecular Cancer Research [American Association for Cancer Research]
卷期号:22 (11): 996-1010
标识
DOI:10.1158/1541-7786.mcr-24-0361
摘要

Frequent (>70%) TP53 mutations often promote its protein stabilization, driving esophageal adenocarcinoma (EAC) development linked to poor survival and therapy resistance. We previously reported that during Barrett's esophagus progression to EAC, an isoform switch occurs in the E3 ubiquitin ligase RNF128 (aka GRAIL-gene related to anergy in lymphocytes), enriching isoform 1 (hereby GRAIL1) and stabilizing the mutant p53 protein. Consequently, GRAIL1 knockdown degrades mutant p53. But, how GRAIL1 stabilizes the mutant p53 protein remains unclear. In search for a mechanism, here, we performed biochemical and cell biology studies to identify that GRAIL has a binding domain (315-PMCKCDILKA-325) for heat shock protein 40/DNAJ. This interaction can influence DNAJ chaperone activity to modulate misfolded mutant p53 stability. As predicted, either the overexpression of a GRAIL fragment (Frag-J) encompassing the DNAJ binding domain or a cell-permeable peptide (Pep-J) encoding the above 10 amino acids can bind and inhibit DNAJ-Hsp70 co-chaperone activity, thus degrading misfolded mutant p53. Consequently, either Frag-J or Pep-J can reduce the survival of mutant p53 containing dysplastic Barrett's esophagus and EAC cells and inhibit the growth of patient-derived organoids of dysplastic Barrett's esophagus in 3D cultures. The misfolded mutant p53 targeting and growth inhibitory effects of Pep-J are comparable with simvastatin, a cholesterol-lowering drug that can degrade misfolded mutant p53 also via inhibiting DNAJA1, although by a distinct mechanism. Implications: We identified a novel ubiquitin ligase-independent, chaperone-regulating domain in GRAIL and further synthesized a first-in-class novel misfolded mutant p53 degrading peptide having future translational potential.
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