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Pattern of myosin heavy chain isoforms in different fibre types of canine trunk and limb skeletal muscles.

机译:犬躯干和四肢骨骼肌不同纤维类型中肌球蛋白重链同工型的模式。

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The aim of this study was to determine the pattern of myosin heavy chain (MHC) isoform expressions within the muscle fibres of functionally diverse trunk and limb dog muscles using monoclonal antibodies that are specific to MHC isoforms. We found that three MHC isoforms are expressed in dog skeletal muscles. The pattern of their expressions determined the existence of 'pure' fibres, i.e. I and IIa, both expressing only one MHC isoform, and 'hybrid' fibres, i.e. I/IIa and IIa/x, that co-expressed two MHC isoforms. While the MHCI, MHCIIa and MHCI/IIa fibres corresponded to the myofibrillar ATPase type fibres I, IIA and IIC, respectively, the hybrid MHCIIa/x fibres mostly behaved like the IIDog fibre type in myofibrillar ATPase reaction as described by Latorre et al. No pure MHCIIx fibres were found. Though MHCIIa/x fibres were quite numerous, their presence varied not only within different muscles but within the same muscle of different animals as well. We suggest that the discrepancies in the classification of fibre types according to their myofibrillar ATPase activity between different studies of dog skeletal muscles are probably a consequence of the variable content of the MHCIIa and MHCIIx isoforms in the MHCIIa/x hybrid fibres. Estimating the histochemical metabolic profile of fibres we found that in all fast fibres oxidative-glycolytic metabolism prevailed, whereas in slow fibres oxidative metabolism was more pronounced.
机译:这项研究的目的是使用特异于MHC亚型的单克隆抗体,确定功能多样的躯干和四肢狗肌肉的肌纤维内肌球蛋白重链(MHC)亚型表达模式。我们发现三种MHC亚型在狗骨骼肌中表达。它们的表达方式决定了仅表达一种MHC同工型的“纯”纤维,即I和IIa,以及共表达两种MHC同工型的“混合”纤维,即I / IIa和IIa / x。 MHCI,MHCIIa和MHCI / IIa纤维分别对应于肌原纤维ATPase类型的纤维I,IIA和IIC,而混合MHCIIa / x纤维在肌原纤维ATPase反应中的表现与IIDog纤维类型相似,如Latorre等人所述。没有发现纯的MHCIIx纤维。尽管MHCIIa / x纤维非常多,但它们的存在不仅在不同动物的不同肌肉内而且在不同动物的同一肌肉内也不同。我们建议,在不同的狗骨骼肌研究之间,根据其肌原纤维ATPase活性在纤维类型分类上的差异可能是MHCIIa / x杂合纤维中MHCIIa和MHCIIx同工型含量可变的结果。估计纤维的组织化学代谢特征,我们发现在所有快速纤维中,氧化糖酵解代谢占主导,而在慢速纤维中,氧化代谢更明显。

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