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The effect of altered temperature on Ca2(+)-sensitive force in permeabilized myocardium and skeletal muscle. Evidence for force dependence of thin filament activation

机译:温度变化对透化的心肌和骨骼肌中Ca2 +敏感力的影响。细丝活化作用力依赖的证据

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摘要

The effect of changes in temperature on the calcium sensitivity of tension development was examined in permeabilized cellular preparations of rat ventricle and rabbit psoas muscle. Maximum force and Ca2+ sensitivity of force development increased with temperature in both muscle types. Cardiac muscle was more sensitive to changes in temperature than skeletal muscle in the range 10-15 degrees C. It was postulated that the level of thin filament activation may be decreased by cooling. To investigate this possibility, troponin C (TnC) was partially extracted from both muscle types, thus decreasing the level of thin filament activation independent of temperature and, at least in skeletal muscle fibers, decreasing cooperative activation of the thin filament as well. TnC extraction from cardiac muscle reduced the calcium sensitivity of tension less than did extraction of TnC from skeletal muscle. In skeletal muscle the midpoint shift of the tension- pCa curve with altered temperature was greater after TnC extraction than in control fibers. Calcium sensitivity of tension development was proportional to the maximum tension generated in cardiac or skeletal muscle under all conditions studied. Based on these results, we conclude that (a) maximum tension-generating capability and calcium sensitivity of tension development are related, perhaps causally, in fast skeletal and cardiac muscles, and (b) thin filament activation is less cooperative in cardiac muscle than in skeletal muscle, which explains the differential sensitivity of the two fiber types to temperature and TnC extraction. Reducing thin filament cooperativity in skeletal muscle by TnC extraction results in a response to temperature similar to that of control cardiac cells. This study provides evidence that force levels in striated muscle influence the calcium binding affinity of TnC.
机译:在大鼠心室和兔腰大肌的透化细胞制剂中检查了温度变化对张力发展的钙敏感性的影响。在两种肌肉中,最大力量和力量发展的Ca2 +敏感性都随温度增加而增加。在10-15摄氏度范围内,心肌比骨骼肌对温度变化更敏感。据推测,细丝激活的水平可能会因冷却而降低。为了研究这种可能性,从两种肌肉类型中部分提取了肌钙蛋白C(TnC),从而降低了细丝活化的水平,而与温度无关,并且至少在骨骼肌纤维中,还降低了细丝的协同活化。与从骨骼肌中提取TnC相比,从心肌中提取TnC降低的钙离子敏感性降低。在TnC提取后,骨骼肌中随温度变化而变化的张力-pCa曲线的中点偏移比对照纤维中的偏移大。在所有研究条件下,钙离子对张力发展的敏感性与心肌或骨骼肌中产生的最大张力成正比。根据这些结果,我们得出结论:(a)最大张力产生能力和张力发展的钙敏感性在快速骨骼肌和心肌中可能是因果相关的;(b)细丝激活在心肌中的协同作用不如在肌肉中。骨骼肌,这解释了两种纤维对温度和TnC提取的不同敏感性。通过TnC提取降低骨骼肌中细丝的协同性会导致对温度的响应与对照组心脏细胞相似。该研究提供了条纹肌中力量水平影响TnC钙结合亲和力的证据。

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