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Myosin Binding Protein-C Slow Phosphorylation is Altered in Duchenne Dystrophy and Arthrogryposis Myopathy in Fast-Twitch Skeletal Muscles

机译:肌球蛋白结合蛋白-C慢磷酸化在快速抽动的骨骼肌中的杜兴营养不良和关节炎的肌病中改变。

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摘要

Myosin Binding Protein-C slow (sMyBP-C), encoded by MYBPC1, comprises a family of regulatory proteins of skeletal muscles that are phosphorylated by PKA and PKC. MYBPC1 missense mutations are linked to the development of Distal Arthrogryposis-1 (DA-1). Although structure-function details for this myopathy are evolving, function is undoubtedly driven by sequence variations and post-translational modifications in sMyBP-C. Herein, we examined the phosphorylation profile of sMyBP-C in mouse and human fast-twitch skeletal muscles. We used Flexor Digitorum Brevis (FDB) isolated from young (~2-months old) and old (~14-months old) wild type and mdx mice, and human Abductor Hallucis (AH) and gastrocnemious muscles carrying the DA-1 mutations. Our results indicate both constitutive and differential phosphorylation of sMyBP-C in aged and diseased muscles. We report a 7–35% reduction in the phosphorylation levels of select sites in old wild type and young or old mdx FDB mouse muscles, compared to young wild type tissue. Similarly, we observe a 30–70% decrease in the phosphorylation levels of all PKA and PKC phospho-sites in the DA-1 AH, but not gastrocnemius, muscle. Overall, our studies show that the phosphorylation pattern of sMyBP-C is differentially regulated in response to age and disease, suggesting that phosphorylation plays important roles in these processes.
机译:MYBPC1编码的慢肌球蛋白结合蛋白C(sMyBP-C)包含一系列骨骼肌调节蛋白,这些蛋白被PKA和PKC磷酸化。 MYBPC1错义突变与远侧关节病1(DA-1)的发展有关。尽管这种肌病的结构功能细节在不断发展,但功能无疑是由sMyBP-C中的序列变异和翻译后修饰驱动的。在本文中,我们检查了小鼠和人类快速抽搐骨骼肌中sMyBP-C的磷酸化谱。我们使用了从年轻(约2个月大)和年老(约14个月大)野生型和mdx小鼠,以及人类外展者幻觉(AH)和携带DA-1突变的肠胃肌肉分离的屈肌短屈肌(FDB)。我们的结果表明,在老年人和患病的肌肉中,sMyBP-C的组成型磷酸化和差异化磷酸化均如此。我们报告说,与年轻的野生型组织相比,古老的野生型和年轻或古老的mdx FDB小鼠肌肉中某些位点的磷酸化水平降低了7-35%。同样,我们观察到DA-1 AH中所有PKA和PKC磷酸位点的磷酸化水平降低了30-70%,但腓肠肌没有。总体而言,我们的研究表明sMyBP-C的磷酸化模式受年龄和疾病的影响而受到差异调节,这表明磷酸化在这些过程中起着重要的作用。

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