Hofmann P A, Fuchs F
Department of Physiology, University of Pittsburgh School of Medicine, Pennsylvania 15261.
Am J Physiol. 1987 Oct;253(4 Pt 1):C541-6. doi: 10.1152/ajpcell.1987.253.4.C541.
The duration of activation in cardiac muscle is a function of the load. On the basis of studies of Ca2+ transients in muscles subjected to quick release, it has been suggested that force or shortening-mediated changes in Ca2+-troponin C affinity may provide a mechanism for a contraction-activation feedback. This study was designed to test the hypothesis that the formation of force-generating complexes between actin and myosin enhances the affinity of cardiac troponin C for Ca2+. This was done by first establishing the normal relationship between Ca2+ binding and force development in chemically skinned bovine ventricular muscle bundles and then comparing the Ca2+-saturation curves obtained with relaxed and contracting muscle bundles. A double isotope technique was used to measure Ca2+ binding during ATP-induced force generation and during relaxation maintained by the phosphate analogue vanadate. The results showed that the generation of force was associated with an enhanced binding of Ca2+ to the Ca2+-specific regulatory site of cardiac troponin C. These data provide direct evidence that feedback between force and activation in the heart may be mediated by the Ca2+-regulatory site of troponin C.
心肌激活的持续时间是负荷的函数。基于对快速释放肌肉中Ca2+瞬变的研究,有人提出,力或缩短介导的Ca2+-肌钙蛋白C亲和力变化可能为收缩-激活反馈提供一种机制。本研究旨在检验肌动蛋白和肌球蛋白之间产生力的复合物的形成会增强心肌肌钙蛋白C对Ca2+的亲和力这一假设。具体做法是,首先在化学去膜的牛心室肌束中建立Ca2+结合与力产生之间的正常关系,然后比较松弛和收缩肌束获得的Ca2+饱和曲线。采用双同位素技术测量ATP诱导力产生期间以及由磷酸盐类似物钒酸盐维持松弛期间的Ca2+结合情况。结果表明,力的产生与Ca2+与心肌肌钙蛋白C的Ca2+特异性调节位点的结合增强有关。这些数据提供了直接证据,表明心脏中力与激活之间的反馈可能由肌钙蛋白C的Ca2+调节位点介导。