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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:猫的咀嚼肌的肌纤维和卫星细胞培养物中肌球蛋白重链,肌球蛋白结合蛋白-C和肌球蛋白的咀嚼特异性同工型的表达

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摘要

We test the hypothesis that cat jaw satellite cells belong to a distinct lineage preprogrammed to express masticatory-specific isoforms of myosin heavy-chain (m-MyHC), myosin-binding protein-C (m-MBP-C), and tropomyosin (m-Tm) during myogenesis in vitro. A monoclonal antibody (MAb) 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. (J Histochem Cytochem 58:623–634, 2010)
机译:我们测试以下假设:猫颚卫星细胞属于不同的谱系,该谱系预编程为表达肌球蛋白重链(m-MyHC),肌球蛋白结合蛋白C(m-MBP-C)和原肌球蛋白(m -Tm)。使用抗m-MyHC的单克隆抗体(MAb)和此处针对猫m-MBP-C和m-Tm的单克隆抗体对猫咬肌的低温恒温器切片以及源自猫颞叶和四肢肌肉卫星细胞的培养肌管进行染色,使用过氧化物酶免疫组织化学。免疫印迹中抗m-MBP-C的单克隆抗体结合纯化的m-MBP-C。抗m-Tm的单克隆抗体在Western印迹法中无法与m-Tm反应,但在凝胶电泳衍生的ELISA中与天然m-Tm反应。在猫咬肌切片中,针对m-MyHC,m-MBP-C和m-Tm的单克隆抗体使所有咀嚼纤维染色,但对下颚缓慢纤维没有染色。与啮齿动物培养相比,猫的下巴和四肢肌肉培养的成熟时间要慢得多。然而,在三周时,所有三只单克隆抗体均对颞肌肌管进行了广泛染色,而在猫肢和大鼠下颌培养物中,它们显然对弱肌分离了。我们得出的结论是,咀嚼纤维的卫星细胞已预先编程为在体外成肌过程中表达这些同工型。这些结果巩固了咀嚼和肢体肌肉同种异型不同的观念。 (J Histochem Cytochem 58:623–634,2010)

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