首页> 外文期刊>The Journal of Physiology >Differences in sodium voltage-gated channel properties according to myosin heavy chain isoform expression in single muscle fibres.
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Differences in sodium voltage-gated channel properties according to myosin heavy chain isoform expression in single muscle fibres.

机译:根据肌球蛋白重链同工型表达在单个肌肉纤维中钠电压门控通道特性的差异。

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The myosin heavy chain (MHC) isoform determines the characteristics and shortening velocity of muscle fibres. The functional properties of the muscle fibre are also conditioned by its membrane excitability through the electrophysiological properties of sodium voltage-gated channels. Macropatch-clamp is used to study sodium channels in fibres from peroneus longus (PL) and soleus (Sol) muscles (Wistar rats, n = 8). After patch-clamp recordings, single fibres are identified by SDS-PAGE electrophoresis according to their myosin heavy chain isoform (slow type I and the three fast types IIa, IIx, IIb). Characteristics of sodium currents are compared (Student's t test) between fibres exhibiting only one MHC isoform. Four MHC isoforms are identified in PL and only type I in Sol single fibres. In PL, maximal sodium current (I(max)), maximal sodium conductance (g(Na,max)) and time constants of activation and inactivation ((m) and (h)) increase according to the scheme I-->IIa-->IIx-->IIb (P < 0.05). (m) values related to sodium channel type and/or function, are similar in Sol I and PL IIb fibres (P = 0.97) despite different contractile properties. The voltage dependence of activation (V(a,1/2)) shows a shift towards positive potentials from Sol type I to IIa, IIx and finally IIb fibres from PL (P < 0.05). These data are consistent with the earlier recruitment of slow fibres in a fast-mixed muscle like PL, while slow fibres of postural muscle such as soleus could be recruited in the same ways as IIb fibres in a fast muscle.
机译:肌球蛋白重链(MHC)亚型决定了肌肉纤维的特性和缩短速度。肌纤维的功能特性还通过钠电压门控通道的电生理特性,通过其膜的兴奋性来调节。 Macropatch-clamp用于研究腓骨(PL)和比目鱼(Sol)肌肉(Wistar大鼠,n = 8)的纤维中的钠通道。膜片钳记录后,根据纤维蛋白的肌球蛋白重链同种型(慢型I和三种快速型IIa,IIx,IIb),通过SDS-PAGE电泳鉴定单根纤维。比较仅表现出一种MHC同工型的纤维之间的钠电流特性(Student's t检验)。在PL中鉴定出4种MHC同种型,在Sol单纤维中仅鉴定出I型。在PL中,根据方案I-> IIa,最大钠电流(I(max)),最大钠电导(g(Na,max))和激活和失活的时间常数((m)和(h))增加-> IIx-> IIb(P <0.05)。与钠通道类型和/或功能有关的(m)值在Sol I和PL IIb纤维中相似(P = 0.97),尽管其收缩特性不同。激活的电压依赖性(V(a,1/2))显示从I型Sol型向IIa型,IIx型以及正从PL型IIb光纤向正电势转变(P <0.05)。这些数据与较早的在PL等快速混合的肌肉中吸收慢纤维相一致,而姿势肌的慢纤维(例如比目鱼肌)可以以与IIb纤维在快肌中相同的方式吸收。

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