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首页> 外文期刊>Journal of Muscle Research and Cell Motility >Human single masseter muscle fibers contain unique combinations of myosin and myosin binding protein C isoforms.
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Human single masseter muscle fibers contain unique combinations of myosin and myosin binding protein C isoforms.

机译:人的单咬肌纤维含有肌球蛋白和肌球蛋白结合蛋白C同工型的独特组合。

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Striated craniofacial and limb muscles differ in their embryological origin, regulatory program during myogenesis, and innervation. In an attempt to explore the effects of these differences on the striated muscle phenotype in humans, the expression of myosin and myosin-associated thick filament proteins were studied at the single fiber level both in the human jaw-closing masseter muscle and in two limb muscles (biceps brachii and quadriceps femoris muscles). In the masseter, unique combinations of myosin heavy chain (MyHC) and myosin binding protein C (MyBP-C) isoforms were observed at the single fiber level. Compared to the limb muscles, the MyHC isoform expression was more complex in the masseter while the opposite was observed for MyBP-C. In limb muscles, a coordinated expression of three MyHC and three MyBP-C isoforms were observed, i.e., single fibers contained one or two MyHC isoforms, and up to three MyBP-C isoforms. Also, the relative content of the different MyBP-C isoforms correlated with theMyHC isoform expression. In the masseter, on the other hand, up to five different MyHC isoforms could be observed in the same fiber, but only one MyBP-C isoform was identified irrespective MyHC isoform expression. This MyBP-C isoform had a migration rate similar to the slow MyBP-C isoform in limb muscle fibers. In conclusion, a unique myofibrillar protein isoform expression was observed in the human masseter muscle fibers, suggesting significant differences in structural and functional properties between muscle fibers from human masseter and limb muscles.
机译:纹状颅面和四肢肌肉的胚胎起源,成肌过程中的调节程序和神经支配有所不同。为了探索这些差异对人的横纹肌表型的影响,研究了人下颌咬肌和两肢肌肉在单纤维水平上肌球蛋白和与肌球蛋白相关的粗丝蛋白的表达。 (肱二头肌和股四头肌)。在咬肌中,在单纤维水平上观察到了肌球蛋白重链(MyHC)和肌球蛋白结合蛋白C(MyBP-C)同工型的独特组合。与四肢肌肉相比,在咬肌中MyHC亚型的表达更为复杂,而MyBP-C则相反。在四肢肌肉中,观察到三个MyHC和三个MyBP-C同工型的协同表达,即单纤维包含一种或两种MyHC同工型,以及多达三个MyBP-C同工型。而且,不同的MyBP-C同工型的相对含量与MyHC同工型表达相关。另一方面,在咬肌中,在同一根纤维中最多可以观察到五种不同的MyHC亚型,但是无论MyHC亚型如何表达,都只能鉴定出一种MyBP-C亚型。这种MyBP-C同工型在肢体肌肉纤维中的迁移速率类似于慢MyBP-C同工型。总之,在人类咬肌肌纤维中观察到独特的肌原纤维蛋白同工型表达,表明来自人类咬肌和肢体肌肉的肌纤维在结构和功能特性上存在显着差异。

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