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Impact of temperature on cross-bridge cycling kinetics in rat myocardium

机译:温度对大鼠心肌跨桥循环动力学的影响

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摘要

The dependence of contractile properties on intracellular calcium in cardiac tissue is a highly cooperative process. Here, the temperature and calcium dependence of contractile and energetical properties in permeabilized cardiac trabeculae from rat were studied to provide novel insights into the underlying kinetic processes. Myofilament Ca~(2+) sensitivity significantly increased with temperature between 15 and 25degC, whereas its steepness was independent of temperature. A direct proportionality between active tension and Ca~(2+)-activated rate of ATP hydrolysis was observed; the slope of this relationship (tension cost) was highly temperature dependent. The rate of tension redevelopment following a quick release-restretch manoeuvre (k_(tr)) depended in a complex manner on the level of contractile activation and on temperature. At saturating calcium levels, the temperature dependence (Q_(10)) of k_(tr) and Ca~(2+)-activated ATP hydrolysis rate were similar (Q_(10) approx 3.5), and significantly higherthan the Q_(10) for maximum tension (T_(max); Q_(10) approx1.3) or tension cost (Q_(10) approx2.5). In contrast, at a low level of contractile activation (approx5% of T_(max)), the Q_(10) of k_(tr) was similar to that of tension cost, and significantly lower than the Q_(10) of Ca~(2+)-activated ATP hydrolysis at that level of contractile activation. Our results are consistent with the hypothesis that at high levels of contractile activation, the rates of tension redevelopment and Ca~(2+)-activated ATP hydrolysis are determined by both apparent cross-bridge attachment and detachment rates, while at low levels, k_(tr) is limited by cross-bridge detachment rate. Tension cost, on the other hand, is determined solely by cross-bridge detachment kinetics at all temperatures and levels of contractile activation.
机译:心脏组织中收缩特性对细胞内钙的依赖性是高度合作的过程。在这里,对大鼠的透化的心脏小梁的收缩和能量特性的温度和钙依赖性进行了研究,以提供对潜在动力学过程的新见解。肌丝Ca〜(2+)的敏感性随温度在15至25℃之间显着增加,而其陡度与温度无关。观察到活性张力与Ca〜(2+)活化的ATP水解率之间成正比。这种关系的斜率(张力成本)高度依赖于温度。快速释放-拉伸动作(k_(tr))后,张力的重新形成速率以复杂的方式取决于收缩激活的水平和温度。在饱和钙水平下,k_(tr)的温度依赖性(Q_(10))和Ca〜(2+)激活的ATP水解速率相似(Q_(10)约为3.5),并且显着高于Q_(10)最大拉力(T_(max); Q_(10)约1.3)或拉力成本(Q_(10)约2.5)。相反,在低水平的收缩激活下(约T_(max)的5%),k_(tr)的Q_(10)与张力成本相似,并且显着低于Ca〜(10)的Q_(10)。 (2+)激活的ATP水解处于该收缩激活水平。我们的结果与以下假设相符:在高水平的收缩活化下,张力的重新形成和Ca〜(2+)活化的ATP水解的速率由表观的跨桥附着和脱离速率决定,而在低水平下,k_ (tr)受跨桥分离率的限制。另一方面,张力成本仅由在所有温度和收缩活化水平下的跨桥分离动力学确定。

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