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首页> 外文期刊>Human Molecular Genetics >Transgenic mice expressing mutant forms VCP/p97 recapitulate the full spectrum of IBMPFD including degeneration in muscle, brain and bone.
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Transgenic mice expressing mutant forms VCP/p97 recapitulate the full spectrum of IBMPFD including degeneration in muscle, brain and bone.

机译:表达突变形式VCP / p97的转基因小鼠概括了IBMPFD的全部谱图,包括肌肉,大脑和骨骼的变性。

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Inclusion body myopathy associated with Paget's disease of bone and frontotemporal dementia (IBMPFD) is a dominantly inherited degenerative disorder caused by mutations in the valosin-containing protein (VCP) gene. VCP (p97 in mouse, TER94 in Drosophila melanogaster and CDC48 in Saccharomyces cerevisiae) is a highly conserved AAA(+)-ATPase that regulates a wide array of cellular processes. The mechanism of IBMPFD pathogenesis is unknown. Towards elucidating the pathogenic mechanism we have developed and characterized transgenic mice with ubiquitous expression of wild-type and disease-causing versions of human VCP/p97. Here, we report that mice expressing VCP/p97 harboring the mutations R155H or A232E develop pathology that is limited to muscle, brain and bone, recapitulating the spectrum of disease in humans with IBMPFD. The mice exhibit progressive muscle weakness and pathological examination of muscle shows classic characteristics of inclusion body myopathy including rimmed vacuoles and TDP-43 pathology. The mice exhibit abnormalities in behavioral testing and pathological examination of the brain shows widespread TDP-43 pathology. Furthermore, radiological examination of the skeleton reveals that mutant mice develop severe osteopenia accompanied by focal lytic and sclerotic lesions in vertebrae and femur. In vitro studies indicate that mutant VCP causes inappropriate activation of the NF-kappaB signaling cascade, which could contribute to the mechanism of pathogenesis in multiple tissues including muscle, bone and brain.
机译:与骨的Paget病和额颞叶性痴呆(IBMPFD)相关的包涵体肌病是一种主要遗传性退行性疾病,是由含valosin蛋白(VCP)基因突变引起的。 VCP(小鼠中的p97,果蝇中的TER94和啤酒酵母中的CDC48)是高度保守的AAA(+)-ATPase,可调节多种细胞过程。 IBMPFD发病机理尚不清楚。为了阐明其致病机制,我们已经开发并鉴定了具有普遍表达的人VCP / p97野生型和致病版本的转基因小鼠。在这里,我们报告说,表达具有R155H或A232E突变的VCP / p97的小鼠发生的病理仅限于肌肉,大脑和骨骼,从而概括了IBMPFD在人类中的疾病谱。小鼠表现出进行性肌无力,并且肌肉的病理学检查显示包涵体肌病的经典特征,包括边缘空泡和TDP-43病理学。小鼠在行为测试中表现出异常,大脑的病理检查显示出广泛的TDP-43病理。此外,骨骼的放射学检查显示,突变小鼠发展为严重的骨质减少,并伴有椎骨和股骨的局灶性溶解性和硬化性病变。体外研究表明,突变型VCP会导致NF-κB信号级联反应的不适当激活,这可能有助于多种组织(包括肌肉,骨骼和大脑)的发病机理。

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