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首页> 外文期刊>The journal of histochemistry and cytochemistry >Expression of Masticatory-specific Isoforms of Myosin Heavy-chain, Myosin-binding Protein-C and Tropomyosin in Muscle Fibers and Satellite Cell Cultures of Cat Masticatory Muscle
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Expression of Masticatory-specific Isoforms of Myosin Heavy-chain, Myosin-binding Protein-C and Tropomyosin in Muscle Fibers and Satellite Cell Cultures of Cat Masticatory Muscle

机译:肌霉链,肌苷粘连蛋白-c和肌纤维肌纤维卫星卫生细胞培养物中染粒剂特异性同种型的表达

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We test the hypothesis that cat jaw satellite cells belong to a distinct lineage preprogrammed to express masticatory-specific isoforms of myosin heavy-chain , myosin-binding protein-C , and tropomyosin during myogenesis in vitro. A monoclonal antibody against m-MyHC and MAbs raised here against cat m-MBP-C and m-Tm were used to stain cryostat sections of cat masseter muscle and cultured myotubes derived from satellite cells of cat temporalis and limb muscles, using peroxidase immunohistochemistry. MAbs against m-MBP-C bound purified m-MBP-C in Western blots. MAbs against m-Tm failed to react with m-Tm in Western blots, but reacted with native m-Tm in gel electrophoresis–derived ELISA. In cat masseter sections, MAbs against m-MyHC, m-MBP-C, and m-Tm stained all masticatory fibers, but not the jaw-slow fibers. Cat jaw and limb muscle cultures mature significantly more slowly relative to rodent cultures. However, at 3 weeks, all three MAbs extensively stained temporalis myotubes, whereas they apparently stained isolated myotubes weakly in cat limb and rat jaw cultures. We conclude that satellite cells of masticatory fibers are preprogrammed to express these isoforms during myogenesis in vitro. These results consolidate the notion that masticatory and limb muscle allotypes are distinct.
机译:我们测试猫钳卫星细胞属于一个不同的谱系预编程的假设,以在体外肌肉发育期间表达肌蛋白重链,霉菌素结合蛋白-c和roomomyosin的咀嚼特异性同种型。针对猫M-MBP-C和M-TM提出的M-MYHC和MAbs的单克隆抗体用于染色猫肌肉肌肉的低温静电部分,使用过氧化物酶免疫组化衍生自猫颞下肌和肢体肌肉的卫星细胞培养的肌管。在Western印迹中针对M-MBP-C结合纯化的M-MBP-C.对阵M-TM的MAb未能在Western印迹中与M-Tm反应,但在凝胶电泳衍生的ELISA中与天然M-TM反应。在Cat Masseters部分中,针对M-MyHC,M-MBP-C和M-TM的MAb染色了所有咀嚼纤维,但不是钳口慢纤维。猫颌骨和肢体肌肉培养成熟相对于啮齿动物培养更慢。然而,在3周内,所有三种MAb都染色了颞肌水管,而他们显然在猫肢体和大鼠颚培养中迄今为止染色肌管。我们得出结论,咀嚼纤维的卫星细胞预编程,以在体外肌钙生成期间表达这些同种型。这些结果巩固了咀嚼和肢体肌肉效果截然不同的观念。

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