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大鼠快、慢肌纤维中肌浆网与收缩特性的匹配

Matching of sarcoplasmic reticulum and contractile properties in rat fast- and slow-twitch muscle fibres.

作者信息

Trinh Huong H, Lamb Graham D

机构信息

Department of Zoology, La Trobe University, Melbourne, Victoria, Australia.

出版信息

Clin Exp Pharmacol Physiol. 2006 Jul;33(7):591-600. doi: 10.1111/j.1440-1681.2006.04412.x.

DOI:10.1111/j.1440-1681.2006.04412.x
PMID:16789925
Abstract
  1. The twitch characteristics (fast-twitch or slow-twitch) of skeletal muscle fibres are determined not only by the contractile apparatus properties of the fibre, but also by the time-course of Ca2+ release and re-uptake by the sarcoplasmic reticulum (SR). The present study examined, in individual fibres from non-transforming muscle of the rat, whether particular SR properties are matched to the contractile apparatus properties of the fibre, in particular in the case of fibres with fast-twitch contractile apparatus located in a slow-twitch muscle, namely the soleus. 2. Force was recorded in single, mechanically skinned fibres from extensor digitorum longus (EDL), gastrocnemius, peroneus longus and soleus muscles. Using repeated cycles in which the SR was emptied of all releasable Ca2+ and then reloaded, it was possible to determine the relative amount of Ca2+ present in the SR endogenously, the maximum SR capacity and the rate of Ca2+ loading. The sensitivity of the contractile apparatus to Ca2+ and Sr2+ was used to classify the fibres as fast-twitch (FT), slow-twitch (ST) or mixed (< 3% of the fibres examined) and thereby identify the likely troponin C and myosin heavy chain types present. 3. There was no significant difference in SR properties between the groups of FT fibres obtained from the four different muscles, including soleus. Despite some overlap in the SR properties of individual fibres between the FT and ST groups, the properties of the FT fibres in all four muscles studied were significantly different from those of the ST and mixed fibres. 4. In general, in FT fibres the SR had a larger capacity and the endogenous Ca2+ content was a relatively lower percentage of maximum compared with ST fibres. Importantly, in terms of their SR properties, FT fibres from soleus muscle more closely resembled FT fibres from other muscles than they did ST fibres from soleus muscle.
摘要
  1. 骨骼肌纤维的抽搐特性(快肌纤维或慢肌纤维)不仅由纤维的收缩装置特性决定,还由肌浆网(SR)释放和重新摄取Ca2+的时间进程决定。本研究在大鼠非转化肌肉的单个纤维中,研究了特定的SR特性是否与纤维的收缩装置特性相匹配,特别是在慢肌(即比目鱼肌)中具有快肌收缩装置的纤维的情况。2. 在来自趾长伸肌(EDL)、腓肠肌、腓骨长肌和比目鱼肌的单个机械去皮纤维中记录力。通过重复循环,使SR中的所有可释放Ca2+排空然后重新加载,可以确定SR中内源性存在的Ca2+的相对量、SR的最大容量和Ca2+加载速率。利用收缩装置对Ca2+和Sr2+的敏感性将纤维分类为快肌(FT)、慢肌(ST)或混合型(在所检查纤维中<3%),从而确定可能存在的肌钙蛋白C和肌球蛋白重链类型。3. 从包括比目鱼肌在内的四种不同肌肉获得的FT纤维组之间,SR特性没有显著差异。尽管FT组和ST组的单个纤维的SR特性存在一些重叠,但在所研究的所有四块肌肉中,FT纤维的特性与ST纤维和混合型纤维的特性显著不同。4. 一般来说,与ST纤维相比,FT纤维中的SR具有更大的容量,内源性Ca2+含量占最大值的百分比相对较低。重要的是,就其SR特性而言,比目鱼肌的FT纤维与其他肌肉的FT纤维更相似,而不是与比目鱼肌的ST纤维更相似。

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