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Prostate cancer: Ubiquitylome analysis identifies dysregulation of effector substrates in SPOP-mutant prostate cancer

机译:前列腺癌:泛素体组分析可确定SPOP突变型前列腺癌中效应底物的失调

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摘要

Cancer genome characterization has revealed driver mutations in genes that govern ubiquitylation; however, the mechanisms by which these alterations promote tumorigenesis remain incompletely characterized. Here, we analyzed changes in the ubiquitin landscape induced by prostate cancer-associated mutations of SPOP, an E3 ubiquitin ligase substrate-binding protein. SPOP mutants impaired ubiquitylation of a subset of proteins in a dominant-negative fashion. Of these, DEK and TRIM24 emerged as effector substrates consistently up-regulated by SPOP mutants. We highlight DEK as a SPOP substrate that exhibited decreases in ubiquitylation and proteasomal degradation resulting from heteromeric complexes of wild-type and mutant SPOP protein. DEK stabilization promoted prostate epithelial cell invasion, which implicated DEK as an oncogenic effector. More generally, these results provide a framework to decipher tumorigenic mechanisms linked to dysregulated ubiquitylation.
机译:癌症基因组表征已经揭示了控制泛素化的基因中的驱动程序突变。然而,这些改变促进肿瘤发生的机制仍未完全表征。在这里,我们分析了由前列腺癌相关的SPOP(E3泛素连接酶底物结合蛋白)突变引起的泛素景观变化。 SPOP突变体以显性负性方式破坏了一部分蛋白质的泛素化。其中,DEK和TRIM24作为效应底物出现,并持续受SPOP突变体上调。我们强调DEK作为SPOP底物,由于野生型和突变SPOP蛋白质的异聚复合物而导致泛素化和蛋白酶体降解降低。 DEK稳定促进前列腺上皮细胞的侵袭,这暗示DEK是致癌效应物。更普遍地,这些结果提供了一个框架,以破译与泛素化失调有关的致瘤机制。

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