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The ubiquitin ligase CHIP/STUB1 targets mutant keratins for degradation.

机译:泛素连接酶CHIP / STUB1靶向突变的角蛋白降解。

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Keratin (K) intermediate filament proteins form cytoskeletal scaffolds in epithelia, the disruption of which leads to a large number of human disorders. KRT5 or KRT14 mutations cause epidermolysis bullosa simplex (EBS). The considerable intra- and interfamilial variability in EBS suggests modifying loci, most of which are unknown. In many human disorders, chaperones and the ubiquitin-proteasome system have been found to modify disease severity, thereby providing novel therapy targets. Here, we demonstrate upregulation of stress-induced Hsp70 and Hsp90 in two EBS models, namely, in neonatal K5(-/-) mice and upon proteasome inhibition in cells that stably express the disease-causing mutation K14-p.Arg125Cys, both harboring keratin aggregates. Furthermore, proteasome inhibition caused nuclear translocation of pHSF-1 and an increase in K14-p.Arg125Cys-positive aggregates in cells. Overexpression of the chaperone-associated ubiquitin ligase CHIP/STUB1 strongly reduced keratin aggregates through increased degradation of mutant K14. Using CHIP-p.Met1_Ala142del (DeltaTPR-CHIP), we demonstrated the involvement of Hsc70 and Hsp70 in mutant keratin degradation. Our data uncover common principles between EBS and other protein misfolding disorders, revealing that aggregation-prone keratins are targeted by components of the chaperone machinery. Thus, modulation of the chaperone machinery using small molecules may represent a novel therapeutic strategy for dominant EBS, allowing reformation of an intact keratin cytoskeleton.
机译:角蛋白(K)中间丝蛋白在上皮细胞中形成细胞骨架支架,其破坏导致大量人类疾病。 KRT5或KRT14突变引起大疱性表皮松解(EBS)。 EBS中相当大的家族内和家族间变异性表明修饰基因座,其中大多数是未知的。在许多人类疾病中,发现分子伴侣和泛素-蛋白酶体系统可改变疾病的严重程度,从而提供新的治疗靶点。在这里,我们证明了在两种EBS模型中,即在新生K5(-/-)小鼠中以及在稳定表达致病突变K14-p.Arg125Cys的细胞中蛋白酶体抑制后,应激诱导的Hsp70和Hsp90的上调。角蛋白聚集体。此外,蛋白酶体的抑制导致pHSF-1的核易位和细胞中K14-p.Arg125Cys阳性聚集体的增加。伴侣相关的泛素连接酶CHIP / STUB1的过表达通过增加突变体K14的降解而大大减少了角蛋白聚集。使用CHIP-p.Met1_Ala142del(DeltaTPR-CHIP),我们证明了Hsc70和Hsp70参与突变的角蛋白降解。我们的数据揭示了EBS与其他蛋白质错误折叠失调之间的共同原理,揭示了易于凝集的角蛋白是分子伴侣组件的目标。因此,使用小分子对分子伴侣机制的调节可能代表了主导性EBS的一种新型治疗策略,从而可以重整完整的角蛋白细胞骨架。

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