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Negative-feedback coordination between proteasomal activity and autophagic flux

机译:蛋白酶体活性与自噬通量之间的负反馈协调

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摘要

In eukaryotes, most proteins are degraded through one of the 2 major proteolytic pathways: the ubiquitin-proteasome system (UPS) and macroautophagy/autophagy. Existing evidence suggests that these processes are critical to human physiology and pathology. Our study revealed a negative feedback system between proteasomal activity and autophagic flux in cells. We demonstrated that proteasome activation achieved by USP14 (ubiquitin specific peptidase 14) inhibition delays the fusion of autophagosomes with the lysosome. A new molecular circuit involving UVRAG (UV radiation resistance associated) was uncovered as a key linker between the systems, adding complexity to the regulatory crosstalk. These findings clearly demonstrate that the surveillance mechanisms for protein homeostasis and cell survival are not separate, but a coordinated system. We also found that proteasome activation promotes the clearance of MAPT (microtubule associated protein tau), while facilitating the aggregation of mutant HTT (huntingtin) in cells, indicating that the biochemical property of a protein might play a role in its response to degradation signals. Collectively, our results present novel mechanistic insights into the reciprocal communication between the UPS and autophagy, highlighting that while a strategy upregulating either the UPS or autophagy holds great potential, it may have caveats originating from the intrinsic feedback regulation between them.
机译:在真核生物中,大多数蛋白质通过两种主要的蛋白水解途径之一降解:泛素-蛋白酶体系统(UPS)和大自噬/自噬。现有证据表明这些过程对人体生理和病理至关重要。我们的研究揭示了蛋白酶活性与细胞自噬通量之间的负反馈系统。我们证明了通过USP14(泛素特异性肽酶14)抑制作用实现的蛋白酶体激活延迟了自噬体与溶酶体的融合。发现了一种涉及UVRAG(与抗紫外线辐射相关)的新分子电路,作为系统之间的关键链接器,增加了调节串扰的复杂性。这些发现清楚地表明,蛋白质稳态和细胞存活的监视机制不是分开的,而是协调的系统。我们还发现,蛋白酶体激活促进了MAPT(微管相关蛋白tau)的清除,同时促进了细胞中突变型HTT(huntingtin)的聚集,表明蛋白的生化特性可能在其对降解信号的响应中起作用。总的来说,我们的结果对UPS和自噬之间的相互交流提出了新颖的机械学见解,突出表明,虽然上调UPS或自噬的策略具有巨大的潜力,但它可能会因它们之间的内在反馈调节而产生警告。

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