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首页> 外文期刊>Cell Calcium: The International Interdisciplinary Forum for Research on Calcium >Calcium-dependence of Donnan potentials in glycerinated rabbit psoas muscle in rigor, at and beyond filament overlap; a role for titin in the contractile process.
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Calcium-dependence of Donnan potentials in glycerinated rabbit psoas muscle in rigor, at and beyond filament overlap; a role for titin in the contractile process.

机译:丝状蛋白重叠处和超出位置时,甘油化的兔大肌肌肉中Donnan电位的钙依赖性;泰坦在收缩过程中的作用。

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摘要

In glycerinated rabbit psoas muscle, Donnan potential measurements demonstrated that the net electric charge on the actin-myosin matrix undergoes a sharp switch-like transition at pCa(50) = 6.8. The potentials are 2 mV less negative at the lower pCa(2+) (P < 0.001). If ATP is present, the muscle contracts and breaks the microelectrode. Therefore the rigor state was studied. There is no reason to suppose a priori that a similar voltage switch does not occur during contraction, however. Calcium dependence is still apparent in muscles stretched beyond overlap (sarcomere length>3.8 mum) and is also seen in the gap filaments between the A- and I-band ends; further stretching abolishes the dependence. These experiments strongly suggest that calcium dependence is controlled initially by the titin component, and that this control is lost when titin filaments break. We suppose that that effect is mediated by the titin kinase in the M-line region and may involve the extensible PEVK region of titin. There is great interest in the electric charge on proteins in muscle within the structural system. We suggest how changes in these charges may control the calcium activation process. We also suggest some simple experimental approaches that could clarify these effects.
机译:在甘油化的兔腰肌中,Donnan电位测量表明肌动蛋白-肌球蛋白基质上的净电荷在pCa(50)= 6.8处经历了急剧的开关状转变。在较低的pCa(2+)处,电位降低了2 mV(P <0.001)。如果存在ATP,则肌肉收缩并破坏微电极。因此,研究了严格状态。但是,没有理由先验地认为在收缩过程中不会发生类似的电压开关。钙依赖在延伸超过重叠(肌节长度> 3.8微米)的肌肉中仍然很明显,并且在A频段和I频段末端之间的间隙细丝中也可以看到。进一步延伸消除了依赖。这些实验强烈表明,钙依赖性起初是由肌动蛋白组分控制的,而当肌动蛋白丝断裂时,这种控制就会失去。我们假设该作用是由M线区域中的titin激酶介导的,并且可能涉及titin的可扩展PEVK区域。人们对结构系统中肌肉中蛋白质的电荷非常感兴趣。我们建议这些电荷的变化如何控制钙的活化过程。我们还建议一些简单的实验方法来阐明这些影响。

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