首页> 美国卫生研究院文献>The Journal of Physiology >Calcium-activated force responses in fast- and slow-twitch skinned muscle fibres of the rat at different temperatures.
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Calcium-activated force responses in fast- and slow-twitch skinned muscle fibres of the rat at different temperatures.

机译:在不同温度下大鼠快慢肌皮肌纤维中钙激活的力反应。

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摘要

1. Force responses from mechanically skinned fibres of rat skeletal muscles (extensor digitorum longus and soleus) were measured at different temperatures in the range 3-35 degrees C following sudden changes in Ca2+ concentration in the preparations. 2. At all temperatures there were characteristic differences between the slow- and fast-twitch muscle fibres with respect to the relative steady-state force-[Ca2+] relation: such as a lower [Ca2+] threshold for activation and a less steep force-pCa curve in slow-twitch muscle fibres. 3. At 3-5 degrees C the force changes in both types of muscle fibres lagged considerably behind the estimated changes in [Ca2+] within the preparations and this enabled us to perform a comparative analysis of the Ca2+ kinetics in the process of force development in both muscle fibre types. This analysis suggest that two and six Ca2+ ions are involved in the regulatory unit for contraction of slow- and fast-twitch muscle fibres respectively. 4. The rate of relaxation following a sudden decrease in [Ca2+] was much lower in the slow-twitch than in the fast-twitch muscle at 5 degrees C, suggesting that properties of the contractile apparatus could play an essential role in determining the rate of relaxation in vivo. 5. There was substantial variation in Ca2+ sensitivity between muscle fibres of the same type from different animals at each temperature. However the steepness of the force-[Ca2+] relation was essentially the same for all fibres of the same type. 6. A change in temperature from 5 to 25 degrees C had a statistically significant effect on the sensitivity of the fast-twitch muscle fibres, rendering them less sensitive to Ca2+ by a factor of 2. However a further increase in temperature from 25 to 35 degrees C did not have any statistically significant effect on the force-[Ca2+] relation in fast-twitch muscle fibres. 7. The effect of temperature on the Ca2+ sensitivity of slow-twitch muscle fibres was not statistically significant, mainly because of the large variation in sensitivity amongst these preparations at room temperature. 8. Two types of oscillatory processes not associated with intracellular membranes were observed in the force response of all slow-twitch muscle fibres when submaximally activated (less than 60% maximum force) at 25 and 35 degrees C, but never at 3-5 degrees C. The frequency of oscillations increased with temperature. 9. Maximum Ca2+-activated force in both muscle fibre types was greatly dependent upon temperature over the range 0-25 degrees C, but increased only slightly above 25 degrees C. 10. Experiments on the rigor state suggest that the number of possible actomyosin interacting sites diminishes considerably as temperature is decreased below 25 degrees C.
机译:1.在制剂中Ca2 +浓度突然变化后,在3-35摄氏度范围内的不同温度下,测量了大鼠骨骼肌(指趾伸肌和比目鱼肌)机械表皮纤维的力响应。 2.在所有温度下,相对于稳态力-[Ca2 +]关系,慢速和快速抽搐肌纤维之间都存在特征差异:例如,较低的[Ca2 +]激活阈值和较小的陡峭力-慢肌纤维中的pCa曲线。 3.在3-5摄氏度时,两种类型的肌肉纤维中的力变化远远落后于制剂中[Ca2 +]的估计变化,这使我们能够在力发展过程中对Ca2 +动力学进行比较分析。两种肌肉纤维类型。该分析表明,两个和六个Ca2 +离子分别参与慢肌和快肌纤维收缩的调节单元。 4.在5摄氏度时,[Ca2 +]突然下降后,慢肌的松弛率要比快肌的松弛率低得多,这表明收缩装置的性能在确定肌钙率方面起着至关重要的作用。体内放松5.在不同温度下,来自不同动物的相同类型的肌肉纤维之间的Ca2 +敏感性差异很大。然而,力-[Ca 2+]关系的陡度对于相同类型的所有纤维基本上是相同的。 6.温度从5摄氏度变化到25摄氏度,对快肌纤维的敏感性具有统计学上的显着影响,使它们对Ca2 +的敏感性降低了2倍。但是温度从25摄氏度进一步升高至35摄氏度摄氏度对快速抽搐的肌纤维中的力-[Ca2 +]关系没有任何统计学上的显着影响。 7.温度对慢肌纤维的Ca2 +敏感性的影响没有统计学意义,主要是因为这些制剂在室温下的敏感性差异很大。 8.当在25和35摄氏度下最大程度激活(小于最大力的60%),但在3-5摄氏度下从未激活时,在所有慢扭肌纤维的力响应中观察到两种与细胞内膜无关的振荡过程C.振荡频率随温度增加。 9.两种肌肉纤维中最大的Ca2 +激活力在很大程度上取决于温度在0-25摄氏度之间,但仅略高于25摄氏度时才增加。10.严格状态下的实验表明,可能的肌动球蛋白相互作用的数量当温度降低到25摄氏度以下时,这些站点将大大减少。

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