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首页> 外文期刊>Histochemistry and Cell Biology >Remarkable heterogeneity in myosin heavy-chain composition of the human young masseter compared with young biceps brachii
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Remarkable heterogeneity in myosin heavy-chain composition of the human young masseter compared with young biceps brachii

机译:与年轻的肱二头肌相比,人类年轻的咬肌肌球蛋白重链组成的显着异质性

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Adult human jaw muscles differ from limb and trunk muscles in enzyme-histochemical fibre type composition. Recently, we showed that the human masseter and biceps differ in fibre type pattern already at childhood. The present study explored the myosin heavy-chain (MyHC) expression in the young masseter and biceps muscles by means of gel electrophoresis (GE) and immuno-histochemical (IHC) techniques. Plasticity in MyHC expression during life was evaluated by comparing the results with the previously reported data for adult muscles. In young masseter, GE identified MyHC-I, MyHC-IIa MyHC-IIx and small proportions of MyHC-fetal and MyHC-α cardiac. Western blots confirmed the presence of MyHC-I, MyHC-IIa and MyHC-IIx. IHC revealed in the masseter six isomyosins, MyHC-I, MyHC-IIa, MyHC-IIx, MyHC-fetal, MyHC α-cardiac and a previously not reported isoform, termed MyHC-IIx′. The majority of the masseter fibres co-expressed two to four isoforms. In the young biceps, both GE and IHC identified MyHC-I, MyHC-IIa and MyHC-IIx. MyHC-I predominated in both muscles. Young masseter showed more slow and less-fast and fetal MyHC than the adult and elderly masseter. These results provide evidence that the young masseter muscle is unique in MyHC composition, expressing MyHC-α cardiac and MyHC-fetal isoforms as well as hitherto unrecognized potential spliced isoforms of MyHC-fetal and MyHC-IIx. Differences in masseter MyHC expression between young adult and elderly suggest a shift from childhood to adulthood towards more fast contractile properties. Differences between masseter and biceps are proposed to reflect diverse evolutionary and developmental origins and confirm that the masseter and biceps present separate allotypes of muscle.
机译:成年人类的下颌肌肉在酶组织化学纤维类型组成方面不同于四肢和躯干肌肉。最近,我们证明了人类的咬肌和二头肌在儿童时期就已经在纤维类型上有所不同。本研究通过凝胶电泳(GE)和免疫组织化学(IHC)技术探索了年轻的咬肌和二头肌肌肉中的肌球蛋白重链(MyHC)表达。通过将结果与先前报道的成人肌肉数据进行比较,评估了生命过程中MyHC表达的可塑性。在年轻的咬肌中,GE鉴定出MyHC-I,MyHC-IIa,MyHC-IIx和一小部分的MyHC-胎儿和MyHC-α心脏。蛋白质印迹证实了MyHC-1,MyHC-IIa和MyHC-IIx的存在。 IHC在咬肌中揭示了六种异肌球蛋白,MyHC-1,MyHC-IIa,MyHC-IIx,MyHC-胎儿,MyHCα-心脏和先前未报道的同种型,称为MyHC-IIx'。大部分咬肌纤维共表达2-4种亚型。在年轻的二头肌中,GE和IHC均鉴定出MyHC-1,MyHC-IIa和MyHC-IIx。 MyHC-I在两条肌肉中都占主导地位。与成人和老年人的咬肌相比,年轻的咬肌表现出更多的慢速和不快的胎儿MyHC。这些结果提供了证据,表明年轻的咬肌在MyHC组成中是独特的,可以表达MyHC-α心脏和MyHC-胎儿同工型,以及迄今为止无法识别的MyHC-胎儿和MyHC-IIx潜在的剪接同工型。年轻人和老年人之间在咬肌MyHC表达上的差异表明,从童年到成年后会向更快速的收缩特性转变。提出了咬肌和二头肌之间的差异,以反映不同的进化和发育起源,并确认咬肌和二头肌呈现出不同的肌肉同种异型。

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