首页> 外文期刊>Histochemistry and cell biology >Intrafusal myosin heavy chain expression of human masseter and biceps muscles at young age shows fundamental similarities but also marked differences
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Intrafusal myosin heavy chain expression of human masseter and biceps muscles at young age shows fundamental similarities but also marked differences

机译:青年时期人类咬肌和二头肌肌肉的融合蛋白肌球蛋白重链表达显示出基本的相似之处,但也存在明显的差异

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摘要

Muscle spindles are skeletal muscle mechanoreceptors that provide proprioceptive information to the central nervous system. The human adult masseter muscle has greater number, larger and more complex muscle spindles than the adult biceps. For a better knowledge of muscle diversity and physiological properties, this study examined the myosin heavy chain (MyHC) expression of muscle spindle intrafusal fibres in the human young masseter and young biceps muscles by using a panel of monoclonal antibodies (mAbs) against different MyHC isoforms. Eight MyHC isoforms were detected in both muscles-slow-tonic, I, IIa, IIx, foetal, embryonic, α-cardiac and an isoform not previously reported in intrafusal fibres, termed IIx′. Individual fibres co-expressed 2-6 isoforms. MyHC-slow tonic separated bag1, AS-bag1 and bag2 fibres from chain fibres. Typically, bag fibres also expressed MyHC-I and α-cardiac, whereas chain fibres expressed IIa and foetal. In the young masseter 98 % of bag1 showed MyHC-α cardiac versus 30 % in the young biceps, 35 % of bag2 showed MyHC-IIx′ versus none in biceps, 17 % of the chain fibres showed MyHC-I versus 61 % in the biceps. In conclusion, the result showed fundamental similarities in intrafusal MyHC expression between young masseter and biceps, but also marked differences implying muscle-specific proprioceptive control, probably related to diverse evolutionary and developmental origins. Finding of similarities in MyHC expression between young and adult masseter and biceps muscle spindles, respectively, in accordance with previously reported similarities in mATPase fibre type composition suggest early maturation of muscle spindles, preceding extrafusal fibres in growth and maturation.
机译:肌肉纺锤体是骨骼肌机械感受器,向中枢神经系统提供本体感受信息。与成年的二头肌相比,成年的咬肌具有更大的数量,更大,更复杂的肌肉纺锤。为了更好地了解肌肉多样性和生理特性,本研究使用一组针对不同MyHC亚型的单克隆抗体(mAb),检查了人类年轻的咬肌和年轻的二头肌中肌梭融合纤维中肌球蛋白重链(MyHC)的表达。 。在慢肌,I,IIa,IIx,胎儿,胚胎,α-心脏肌肉中都检测到八种MyHC亚型,并且以前没有在融合神经内纤维中报道过这种亚型,称为IIx'。单个纤维共表达2-6个同工型。 MyHC慢速滋补剂从链状纤维中分离出bag1,AS-bag1和bag2纤维。通常,袋纤维还表达MyHC-1和α-心脏,而链纤维则表达IIa和胎儿。在年轻的咬肌中,bag1的98%表现为MyHC-α心脏,而年轻的二头肌则为30%,bag2的35%表现为MyHC-IIx',而二头肌则没有,而17%的链纤维表现为MyHC-I,而二头肌则为61%。二头肌。总之,该结果表明年轻咬肌和二头肌在融合内MyHC表达上有根本的相似性,但也暗示了肌肉特异性本体感受控制的显着差异,可能与多种进化和发育起源有关。根据先前报道的mATPase纤维类型组成的相似性,分别在年轻和成年的咬肌和二头肌肌纺锤体之间发现MyHC表达的相似性,表明肌肉纺锤体的早期成熟,而在融合和生长外的纤毛之前。

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