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蛋白激酶 g 正向调节蛋白酶体介导的错误折叠蛋白降解。

Protein kinase g positively regulates proteasome-mediated degradation of misfolded proteins.

机构信息

Division of Basic Biomedical Sciences, University of South Dakota, 414 E Clark St, Vermillion, SD 57069, USA.

出版信息

Circulation. 2013 Jul 23;128(4):365-76. doi: 10.1161/CIRCULATIONAHA.113.001971. Epub 2013 Jun 14.

Abstract

BACKGROUND

Proteasome functional insufficiency is implicated in a large subset of cardiovascular diseases and may play an important role in their pathogenesis. The regulation of proteasome function is poorly understood, hindering the development of effective strategies to improve proteasome function.

METHODS AND RESULTS

Protein kinase G (PKG) was manipulated genetically and pharmacologically in cultured cardiomyocytes. Activation of PKG increased proteasome peptidase activities, facilitated proteasome-mediated degradation of surrogate (enhanced green fluorescence protein modified by carboxyl fusion of degron CL1) and bona fide (CryAB(R120G)) misfolded proteins, and attenuated CryAB(R120G) overexpression-induced accumulation of ubiquitinated proteins and cellular injury. PKG inhibition elicited the opposite responses. Differences in the abundance of the key 26S proteasome subunits Rpt6 and β5 between the PKG-manipulated and control groups were not statistically significant, but the isoelectric points were shifted by PKG activation. In transgenic mice expressing a surrogate substrate (GFPdgn), PKG activation by sildenafil increased myocardial proteasome activities and significantly decreased myocardial GFPdgn protein levels. Sildenafil treatment significantly increased myocardial PKG activity and significantly reduced myocardial accumulation of CryAB(R120G), ubiquitin conjugates, and aberrant protein aggregates in mice with CryAB(R120G)-based desmin-related cardiomyopathy. No discernible effect on bona fide native substrates of the ubiquitin-proteasome system was observed from PKG manipulation in vitro or in vivo.

CONCLUSIONS

PKG positively regulates proteasome activities and proteasome-mediated degradation of misfolded proteins, likely through posttranslational modifications to proteasome subunits. This may be a new mechanism underlying the benefit of PKG stimulation in treating cardiac diseases. Stimulation of PKG by measures such as sildenafil administration is potentially a new therapeutic strategy to treat cardiac proteinopathies.

摘要

背景

蛋白酶体功能不足与一大类心血管疾病有关,可能在其发病机制中发挥重要作用。蛋白酶体功能的调节知之甚少,这阻碍了开发有效策略来改善蛋白酶体功能。

方法和结果

在培养的心肌细胞中遗传和药理学操纵蛋白激酶 G(PKG)。PKG 的激活增加了蛋白酶体肽酶活性,促进了蛋白酶体介导的替代(通过羧基融合 degron CL1 修饰的增强型绿色荧光蛋白)和真实(CryAB(R120G))错误折叠蛋白的降解,并减轻了 CryAB(R120G)过表达诱导的泛素化蛋白积累和细胞损伤。PKG 抑制引起相反的反应。PKG 操纵和对照组之间关键 26S 蛋白酶体亚基 Rpt6 和 β5 的丰度没有统计学差异,但等电点通过 PKG 激活发生了转移。在表达替代底物(GFPdgn)的转基因小鼠中,西地那非激活 PKG 增加了心肌蛋白酶体活性,并显著降低了心肌 GFPdgn 蛋白水平。西地那非治疗显著增加了心肌 PKG 活性,并显著减少了 CryAB(R120G)、泛素缀合物和 CryAB(R120G)为基础的结蛋白相关性心肌病中小鼠心肌中异常蛋白聚集体的积累。在体外或体内操纵 PKG 对泛素-蛋白酶体系统的真实天然底物没有明显影响。

结论

PKG 正向调节蛋白酶体活性和错误折叠蛋白的蛋白酶体介导的降解,可能通过蛋白酶体亚基的翻译后修饰。这可能是 PKG 刺激治疗心脏疾病的潜在新机制。通过西地那非等措施刺激 PKG 可能是治疗心脏蛋白病的一种新的治疗策略。

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