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芽殖酵母中SUMO化对错误折叠蛋白聚集和降解的调控

Regulation of misfolded protein aggregation and degradation by SUMOylation in budding yeast.

作者信息

Folger Austin, Gutierrez-Morton Emily, Kabbaj Marie-Helene, Campbell Mark Tyler, Morton Garret, Megraw Timothy L, Wang Yanchang

机构信息

Department of Biomedical Sciences, College of Medicine, Florida State University, 1115 West Call Street, Tallahassee, FL 32306-4300.

出版信息

Mol Biol Cell. 2025 Apr 30:mbcE24120540. doi: 10.1091/mbc.E24-12-0540.

Abstract

Protein misfolding is linked to many neurodegenerative disorders, such as Huntington's disease. The increase of glutamine-encoding CAG repeats in the first exon of Huntingtin () causes Huntington's disease. Protein fragments of Htt exon 1 with polyQ expansion (mHtt) are prone to aggregation, resulting in oligomers, amyloid fibrils, or large inclusion bodies. Previous studies demonstrate mHtt SUMOylation, a process of covalent attachment of mall biquitin-like difiers (SUMOs) to target proteins. Protein polySUMOylation further triggers its ubiquitination and segregation by the polySUMO axis. Here, we examined how SUMOylation regulates aggregation and degradation of Htt103QP-GFP, a model mHtt, in budding yeast. We first confirmed Htt103QP-GFP SUMOylation in budding yeast. We also found that recruitment of the SUMO E2 conjugating enzyme to Htt103QP-GFP accelerates its aggregation, but recruitment of a SUMO protease to Htt103QP-GFP delays this process. Disruption of the polySUMO axis led to increased Htt103QP-GFP aggregation. Interestingly, the results from FRAP assay and treatment with a biomolecular condensate-disrupting chemical indicate that SUMOylation accelerates biomolecular condensate formation of Htt103QP-GFP. Importantly, impaired SUMOylation delays Htt103QP-GFP proteasomal degradation and accelerates formation of SDS-insoluble Htt103QP-GFP aggregates. Together, these results indicate that SUMOylation facilitates proteasomal degradation of misfolded proteins by retaining their solubility.

摘要

蛋白质错误折叠与许多神经退行性疾病有关,如亨廷顿舞蹈症。亨廷顿蛋白(Htt)第一个外显子中编码谷氨酰胺的CAG重复序列增加会导致亨廷顿舞蹈症。具有多聚谷氨酰胺(polyQ)扩展的Htt外显子1的蛋白质片段(mHtt)易于聚集,形成寡聚体、淀粉样原纤维或大的包涵体。先前的研究表明存在mHtt的类泛素化修饰(SUMOylation),这是一种小分子泛素样修饰物(SUMO)与靶蛋白共价连接的过程。蛋白质的多聚SUMO化修饰进一步通过多聚SUMO轴触发其泛素化和隔离。在此,我们研究了类泛素化修饰如何调节芽殖酵母中模型mHtt即Htt103QP-GFP的聚集和降解。我们首先证实了芽殖酵母中Htt103QP-GFP的类泛素化修饰。我们还发现,将SUMO E2缀合酶募集到Htt103QP-GFP会加速其聚集,但将SUMO蛋白酶募集到Htt103QP-GFP会延迟这一过程。多聚SUMO轴的破坏导致Htt103QP-GFP聚集增加。有趣的是,荧光恢复后光漂白(FRAP)分析结果以及用一种破坏生物分子凝聚物的化学物质处理的结果表明,类泛素化修饰加速了Htt103QP-GFP的生物分子凝聚物形成。重要的是,类泛素化修饰受损会延迟Htt103QP-GFP的蛋白酶体降解,并加速SDS不溶性Htt103QP-GFP聚集体的形成。总之,这些结果表明,类泛素化修饰通过保持错误折叠蛋白的溶解性促进其蛋白酶体降解。

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