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首页> 外文期刊>Circulation research: a journal of the American Heart Association >Ube2v1 Positively Regulates Protein Aggregation by Modulating Ubiquitin Proteasome System Performance Partially Through K63 Ubiquitination
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Ube2v1 Positively Regulates Protein Aggregation by Modulating Ubiquitin Proteasome System Performance Partially Through K63 Ubiquitination

机译:UBE2V1通过部分通过K63泛素占K63 ubiquitination调节泛素蛋白酶体系表性能来呈正调节蛋白质聚集

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摘要

Supplemental Digital Content is available in the text. Rationale: Compromised protein quality control can result in proteotoxic intracellular protein aggregates in the heart, leading to cardiac disease and heart failure. Defining the participants and understanding the underlying mechanisms of cardiac protein aggregation is critical for seeking therapeutic targets. We identified Ube2v1 (ubiquitin-conjugating enzyme E2 variant 1) in a genome-wide screen designed to identify novel effectors of the aggregation process. However, its role in the cardiomyocyte is undefined. Objective: To assess whether Ube2v1 regulates the protein aggregation caused by cardiomyocyte expression of a mutant αB crystallin (CryAB~(R120G)) and identify how Ube2v1 exerts its effect. Methods and Results: Neonatal rat ventricular cardiomyocytes were infected with adenoviruses expressing either wild-type CryAB (CryAB~(WT)) or CryAB~(R120G). Subsequently, loss- and gain-of-function experiments were performed. Ube2v1 knockdown decreased aggregate accumulation caused by CryAB~(R120G)expression. Overexpressing Ube2v1 promoted aggregate formation in CryAB~(WT)and CryAB~(R120G)-expressing neonatal rat ventricular cardiomyocytes. Ubiquitin proteasome system performance was analyzed using a ubiquitin proteasome system reporter protein. Ube2v1 knockdown improved ubiquitin proteasome system performance and promoted the degradation of insoluble ubiquitinated proteins in CryAB~(R120G)cardiomyocytes but did not alter autophagic flux. Lys (K) 63-linked ubiquitination modulated by Ube2v1 expression enhanced protein aggregation and contributed to Ube2v1’s function in regulating protein aggregate formation. Knocking out Ube2v1 exclusively in cardiomyocytes by using AAV9 (adeno-associated virus 9) to deliver multiplexed single guide RNAs against Ube2v1 in cardiac-specific Cas9 mice alleviated CryAB~(R120G)-induced protein aggregation, improved cardiac function, and prolonged lifespan in vivo. Conclusions: Ube2v1 plays an important role in protein aggregate formation, partially by enhancing K63 ubiquitination during a proteotoxic stimulus. Inhibition of Ube2v1 decreases CryAB~(R120G)-induced aggregate formation through enhanced ubiquitin proteasome system performance rather than autophagy and may provide a novel therapeutic target to treat cardiac proteinopathies.
机译:文本中提供了补充数字内容。理由:受损的蛋白质质量控​​制可以导致心脏中的蛋白质细胞内蛋白质聚集体,导致心脏病和心力衰竭。定义参与者并理解心脏蛋白质聚集的潜在机制对于寻求治疗目标至关重要。我们在旨在识别聚集过程的新效果的基因组宽屏幕中,我们鉴定了UBE2V1(泛素缀合的酶E2变体1)。然而,它在心肌细胞中的作用是未定义的。目的:评估UBE2V1是否调节由突变αb晶体(Cryab〜(R120g))的心肌细胞表达引起的蛋白质聚集,并识别UBE2V1如何施加其效果。方法和结果:新生儿大鼠心室心肌细胞用表达野生型乳酸(Cryab〜(WT))或Cryab〜(R120G)的腺病毒感染。随后,进行损失和函数的效果实验。 UBE2V1敲低度减少了由Cryab〜(R120G)表达引起的总累积。过表达UBE2V1促进了Cryab〜(WT)和Cryab〜(R120G)的骨料形成 - 表达新生大鼠心室心肌细胞。使用泛素蛋白酶体系报告蛋白分析了泛素蛋白酶体系的性能。 UBE2V1敲低改善了泛素蛋白酶体系的性能,并促进了CryOb〜(R120G)心肌细胞中不溶性染色蛋白的降解,但没有改变自噬助焊剂。通过UBE2V1表达增强的蛋白质聚集,调节Lys(K)63连接的泛素化,并导致UBE2V1在调节蛋白质聚集体形成方面的功能。通过使用AAV9(腺相关病毒9)来敲除ube2v1,通过使用AAV9(腺相关病毒9)来递送对ube2v1的多路复用单引导RNA,在心脏特异性Cas9小鼠中缓解粘附〜(r120g)诱导的蛋白质聚集,改善的心脏功能和体内长期的寿命。结论:UBE2V1在蛋白质聚集体形成中起重要作用,部分通过在蛋白毒素刺激期间增强K63泛素。通过增强泛素蛋白酶体系的性能而不是自噬地,UBE2V1的抑制减少了粘附〜(R120G) - 诱导的聚集体形成,并且可以提供一种新的治疗心脏蛋白质化的治疗靶标。

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