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Upregulation of PKD1L2 provokes a complex neuromuscular disease in the mouse.

机译:PKD1L2的上调在小鼠中引发了复杂的神经肌肉疾病。

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摘要

Following a screen for neuromuscular mouse mutants, we identified ostes, a novel N-ethyl N-nitrosourea-induced mouse mutant with muscle atrophy. Genetic and biochemical evidence shows that upregulation of the novel, uncharacterized transient receptor potential polycystic (TRPP) channel PKD1L2 (polycystic kidney disease gene 1-like 2) underlies this disease. Ostes mice suffer from chronic neuromuscular impairments including neuromuscular junction degeneration, polyneuronal innervation and myopathy. Ectopic expression of PKD1L2 in transgenic mice reproduced the ostes myopathic changes and, indeed, caused severe muscle atrophy in Tg(Pkd1l2)/Tg(Pkd1l2) mice. Moreover, double-heterozygous mice (ostes/+, Tg(Pkd1l2)/0) suffer from myopathic changes more profound than each heterozygote, indicating positive correlation between PKD1L2 levels and disease severity. We show that, in vivo, PKD1L2 primarily associates with endogenous fatty acid synthase in normal skeletal muscle, and these proteins co-localize to costameric regions of the muscle fibre. In diseased ostes/ostes muscle, both proteins are upregulated, and ostes/ostes mice show signs of abnormal lipid metabolism. This work shows the first role for a TRPP channel in neuromuscular integrity and disease.
机译:在对神经肌肉小鼠突变体进行筛选后,我们鉴定了ostes,一种由N-乙基N-亚硝基脲诱导的新型肌肉萎缩小鼠突变体。遗传和生化证据表明,新型的,未表征的瞬时受体潜在多囊性(TRPP)通道PKD1L2(多囊肾疾病基因1样2)的上调是该疾病的基础。 Ostes小鼠患有慢性神经肌肉损害,包括神经肌肉连接变性,多神经元神经支配和肌病。 PKD1L2在转基因小鼠中的异位表达重现了成肌的肌病性变化,并确实在Tg(Pkd1l2)/ Tg(Pkd1l2)小鼠中引起了严重的肌肉萎缩。此外,双杂合子小鼠(ostes / +,Tg(Pkd1l2)/ 0)的肌病性变化比每个杂合子更深刻,表明PKD1L2水平与疾病严重程度呈正相关。我们显示,在体内,PKD1L2主要与正常骨骼肌中的内源性脂肪酸合酶缔合,并且这些蛋白质共定位于肌肉纤维的肋骨区域。在患病的ostost / ostes肌肉中,两种蛋白质均被上调,ostost / ostes小鼠显示出脂质代谢异常的迹象。这项工作显示了TRPP通道在神经肌肉完整性和疾病中的第一个作用。

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