首页> 外文期刊>Journal of Cardiovascular Development and Disease >Cardiac-Restricted Expression of VCP/TER94 RNAi or Disease Alleles Perturbs Drosophila Heart Structure and Impairs Function
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Cardiac-Restricted Expression of VCP/TER94 RNAi or Disease Alleles Perturbs Drosophila Heart Structure and Impairs Function

机译:VCP / TER94 RNAi的心脏限制表达或疾病等位基因扰动果蝇的心脏结构并损害其功能

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Valosin-containing protein (VCP) is a highly conserved mechanoenzyme that helps maintain protein homeostasis in all cells and serves specialized functions in distinct cell types. In skeletal muscle, it is critical for myofibrillogenesis and atrophy. However, little is known about VCP’s role(s) in the heart. Its functional diversity is determined by differential binding of distinct cofactors/adapters, which is likely disrupted during disease. VCP mutations cause multisystem proteinopathy (MSP), a pleiotropic degenerative disorder that involves inclusion body myopathy. MSP patients display progressive muscle weakness. They also exhibit cardiomyopathy and die from cardiac and respiratory failure, which are consistent with critical myocardial roles for the enzyme. Nonetheless, efficient models to interrogate VCP in cardiac muscle remain underdeveloped and poorly studied. Here, we investigated the significance of VCP and mutant VCP in the Drosophila heart. Cardiac-restricted RNAi-mediated knockdown of TER94, the Drosophila VCP homolog, severely perturbed myofibrillar organization and heart function in adult flies. Furthermore, expression of MSP disease-causing alleles engendered cardiomyopathy in adults and structural defects in embryonic hearts. Drosophila may therefore serve as a valuable model for examining role(s) of VCP in cardiogenesis and for identifying novel heart-specific VCP interactions, which when disrupted via mutation, contribute to or elicit cardiac pathology.
机译:含Valosin的蛋白质(VCP)是一种高度保守的机械酶,有助于维持所有细胞中的蛋白质稳态,并在不同的细胞类型中发挥专门的功能。在骨骼肌中,这对于肌原纤维形成和萎缩至关重要。但是,对于VCP在心脏中的作用知之甚少。它的功能多样性是由不同辅因子/衔接子的差异结合决定的,在疾病期间可能会破坏它们。 VCP突变会引起多系统蛋白病(MSP),这是一种多囊性变性疾病,涉及包涵体肌病。 MSP患者表现出进行性肌肉无力。它们还表现出心肌病并因心脏和呼吸衰竭而死亡,这与该酶的关键心肌作用一致。然而,有效的模型来询问心肌中的VCP仍未开发和研究不足。在这里,我们调查了果蝇心脏中VCP和突变VCP的意义。受心脏限制的RNAi介导的果蝇VCP同源物TER94的敲低严重干扰了成年果蝇的肌原纤维组织和心脏功能。此外,引起MSP疾病的等位基因的表达引起成年人的心肌病和胚胎心脏的结构缺陷。果蝇因此可以用作检查VCP在心脏发生中的作用和鉴定新颖的心脏特异性VCP相互作用的有价值的模型,当这种新的心脏特异性VCP相互作用因突变而被破坏时,会促成或引起心脏病理。

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