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首页> 外文期刊>Cell Regulation >A disease-associated frameshift mutation in caveolin-1 disrupts caveolae formation and function through introduction of a de novo ER retention signal
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A disease-associated frameshift mutation in caveolin-1 disrupts caveolae formation and function through introduction of a de novo ER retention signal

机译:Caveolin-1中与疾病相关的移码突变会通过引入从头ER保留信号来破坏小窝的形成和功能

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摘要

Caveolin-1 (CAV1) is an essential component of caveolae and is implicated in numerous physiological processes. Recent studies have identified heterozygous mutations in the CAV1 gene in patients with pulmonary arterial hypertension (PAH), but the mechanisms by which these mutations impact caveolae assembly and contribute to disease remain unclear. To address this question, we examined the consequences of a familial PAH-associated frameshift mutation in CAV1 , P158PfsX22, on caveolae assembly and function. We show that C-terminus of the CAV1 P158 protein contains a functional ER-retention signal that inhibits ER exit and caveolae formation and accelerates CAV1 turnover in Cav1–/– MEFs. Moreover, when coexpressed with wild-type (WT) CAV1 in Cav1–/– MEFs, CAV1-P158 functions as a dominant negative by partially disrupting WT CAV1 trafficking. In patient skin fibroblasts, CAV1 and caveolar accessory protein levels are reduced, fewer caveolae are observed, and CAV1 complexes exhibit biochemical abnormalities. Patient fibroblasts also exhibit decreased resistance to a hypo-osmotic challenge, suggesting the function of caveolae as membrane reservoir is compromised. We conclude that the P158PfsX22 frameshift introduces a gain of function that gives rise to a dominant negative form of CAV1, defining a new mechanism by which disease-associated mutations in CAV1 impair caveolae assembly.
机译:Caveolin-1(CAV1)是小窝的重要组成部分,与许多生理过程有关。最近的研究已经确定了肺动脉高压(PAH)患者CAV1基因的杂合突变,但是这些突变影响小窝组装并导致疾病的机制仍不清楚。为了解决这个问题,我们研究了CAV1,P158PfsX22中家族性PAH相关移码突变对小窝组装和功能的影响。我们显示,CAV1 P158蛋白的C末端包含功能性ER保留信号,该信号抑制ER出口和小窝形成并加速Cav1 – / – MEF中的CAV1周转。此外,当与Cav1 – / – MEF中的野生型(WT)CAV1共表达时,CAV1-P158通过部分破坏WT CAV1的运输而成为显性阴性。在患者皮肤成纤维细胞中,CAV1和海绵体辅助蛋白水平降低,观察到的海绵体减少,并且CAV1复合物表现出生化异常。患者的成纤维细胞还表现出对低渗挑战的抵抗力下降,表明海绵体作为膜贮库的功能受到损害。我们得出的结论是,P158PfsX22移码引入了功能增强,从而引起了CAV1的显性负向形式,从而定义了一种新的机制,通过该机制,CAV1中与疾病相关的突变削弱了小窝组装。

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