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首页> 外文期刊>Cells tissues organs >Distinct myosin heavy chain isoform transitions in developing slow and fast cat hindlimb muscles.
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Distinct myosin heavy chain isoform transitions in developing slow and fast cat hindlimb muscles.

机译:发育缓慢和快速的猫后肢肌肉中独特的肌球蛋白重链同工型转变。

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The expression of myosin heavy chain (MHC) isoforms leading to adult fiber phenotypes in the tibialis anterior (TA) and soleus muscles of the cat were investigated from embryonic day 35 to 1 year after birth. Electrophoresis and immunoblotting of myofibrils demonstrated the expression of 5 different MHC isoforms, i.e. I, IIa, IIx, embryonic, and neonatal, during development. Based on electrophoresis, the adult-like MHC composition of the soleus and TA were not observed until postnatal day 40 (P40) and 120 (P120), respectively. In contrast, immunohistochemical analyses revealed that the adult-like fiber phenotype composition was attained much later (P120) in the soleus. The existence of multiple MHC isoforms in individual fibers suggested that transitions occurred until P120 in both muscles. Adult type I fibers were first observed at P1. Adult IIA fibers were first observed at P30 in the TA and P40 in the soleus. IIX fibers were not identified until P40 in the TA. The transition to the predominantly slow phenotype of the soleus involved a gradual loss of embryonic and fast isoforms accompanied by an accumulation of slow MHC. In contrast, the expression of slow and fast MHC in the fast TA muscle was relatively unchanged throughout development. These results show that the establishment of a given MHC-based fiber phenotype varies significantly between slow and fast muscles in the kitten. Copyright 2000 S. Karger AG, Basel
机译:从出生后35到1年的胚胎天,研究了导致成年纤维表型在猫的胫前肌(TA)和比目鱼肌中的肌球蛋白重链(MHC)亚型的表达。肌原纤维的电泳和免疫印迹证明了在发育过程中5种不同的MHC亚型的表达,即I,IIa,IIx,胚胎和新生儿。根据电泳,直到出生后第40天(P40)和第120天(P120)才观察到比目鱼肌和TA的成人样MHC成分。相比之下,免疫组织化学分析显示,比目鱼比成人晚得多的时间获得了成年状纤维表型组成(P120)。单个纤维中存在多个MHC同工型,表明在两块肌肉中均发生过渡直到P120。首先在P1观察到成人I型纤维。成年IIA纤维首先在TA的P30和比目鱼的P40处观察到。直到TA中的P40才鉴定出IIX纤维。比目鱼向主要慢型表型的转变涉及逐渐丧失的胚胎和快速同工型,并伴有缓慢的MHC积累。相反,在整个发育过程中,快TA肌肉中慢MHC和快MHC的表达相对不变。这些结果表明,给定的基于MHC的纤维表型的建立在小猫的慢肌和快肌之间有很大差异。版权所有2000 S. Karger AG,巴塞尔

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