首页> 美国卫生研究院文献>The Journal of Physiology >Changes of intracellular milieu with fatigue or hypoxia depress contraction of skinned rabbit skeletal and cardiac muscle.
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Changes of intracellular milieu with fatigue or hypoxia depress contraction of skinned rabbit skeletal and cardiac muscle.

机译:疲劳或缺氧引起的细胞内环境变化抑制了皮肤兔子的骨骼和心肌的收缩。

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摘要

1. Maximal calcium-activated force (Fmax) and calcium sensitivity were markedly decreased in detergent-skinned fibres from skeletal and cardiac muscle by solutions that mimicked the total milieu changes associated with fatigue and hypoxia. Further experiments determined the relative contribution of each of the individual changes in milieu. 2. Both Ca2+ sensitivity and Fmax of skeletal and cardiac fibres were decreased with increased [H+] or inorganic phosphate (Pi). These effects were greater in cardiac muscle. 3. Decreasing MgATP over the range observed with fatigue and hypoxia (6.8-4.7 mM) had no effect on Fmax or Ca2+ sensitivity of either muscle type. 4. Decreasing phosphocreatine (PCr: 15-1 mM) increased Fmax but had little effect on Ca2+ sensitivity in both muscle types. In cardiac fibres, the effect on Fmax could be mimicked by inhibition of endogenous creatine kinase. 5. ADP (0.7 mM) increased Fmax and Ca2+ sensitivity, while AMP (0.06 mM) slightly increased Fmax but had no effect on Ca2+ sensitivity of either skeletal or cardiac fibres. 6. Creatine (25 mM) had no significant effect on either Ca2+ sensitivity or Fmax of skeletal and cardiac muscle fibres. At higher levels (50 mM), however, creatine depressed Fmax and slightly altered Ca2+ sensitivity. 7. Thiophosphorylation of myosin P light chains (phosphorylatable light chains of myosin) in rabbit psoas fibres had no effect on Ca2+ sensitivity, yet slightly but significantly increased Fmax under fatigue conditions. 8. Reducing the affinity for ATP hydrolysis (by adding ADP, AMP and creatine) over the range calculated for fatigue/hypoxia (60-45 kJ/mol) produced the enhancement in Fmax expected from added ADP and AMP in cardiac but not skeletal muscle, indicating that changes in affinity influence Fmax of skeletal muscle. Reducing affinity produced little change in Ca2+ sensitivity of skeletal muscle. In contrast, the change produced in cardiac muscle was greater than that expected from addition of ADP and AMP; i.e. decreasing affinity increases calcium sensitivity of the heart. 9. Simple summation of all significant changes expected from each constituent altered by fatigue/hypoxia adequately predicted the observed changes in Fmax and Ca2+ sensitivity in both cardiac and skeletal muscle fibres with but one exception (the change in Ca2+ sensitivity of skeletal muscle at pH 7 was slightly overestimated).
机译:1.通过模仿与疲劳和缺氧有关的总环境变化的溶液,骨骼肌和心肌去污剂去皮纤维中的最大钙激活力(Fmax)和钙敏感性显着降低。进一步的实验确定了环境中每个个体变化的相对贡献。 2.随着[H +]或无机磷酸盐(Pi)的增加,骨骼肌和心脏纤维的Ca2 +敏感性和Fmax均降低。这些影响在心肌中更大。 3.在疲劳和缺氧状态下观察到的范围内MgATP降低(6.8-4.7 mM)不会影响任何一种肌肉类型的Fmax或Ca2 +敏感性。 4.降低磷酸肌酸(PCr:15-1 mM)可增加Fmax,但对两种肌肉类型的Ca2 +敏感性几乎没有影响。在心脏纤维中,对Fmax的作用可以通过抑制内源性肌酸激酶来模仿。 5. ADP(0.7 mM)增加了Fmax和Ca2 +敏感性,而AMP(0.06 mM)稍微增加了Fmax,但对骨骼或心脏纤维的Ca2 +敏感性没有影响。 6.肌酸(25 mM)对骨骼肌和心肌纤维的Ca2 +敏感性或Fmax均无明显影响。然而,在较高水平(50 mM)下,肌酸降低了Fmax并轻微改变了Ca2 +敏感性。 7.兔腰大肌纤维中肌球蛋白P轻链(肌球蛋白的可磷酸化轻链)的硫代磷酸化对Ca2 +敏感性没有影响,但在疲劳条件下Fmax略有增加,但显着增加。 8.在为疲劳/缺氧计算的范围内(60-45 kJ / mol)降低对ATP水解的亲和力(通过添加ADP,AMP和肌酸)(60-45 kJ / mol),可使心肌(而非骨骼肌)中添加ADP和AMP的Fmax增强,表明亲和力的变化会影响骨骼肌的Fmax。降低亲和力对骨骼肌的Ca2 +敏感性影响不大。相反,心肌中产生的变化大于添加ADP和AMP所预期的变化。即降低亲和力会增加心脏的钙敏感性。 9.简单总结所有因疲劳/缺氧而改变的各成分所预期的所有显着变化,即可充分预测观察到的心肌和骨骼肌纤维的Fmax和Ca2 +敏感性变化,但有一个例外(pH 7时骨骼肌的Ca2 +敏感性变化)被稍微高估了)。

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