Albrecht K, Schneider A, Liebetrau C, Rüegg J C, Pfitzer G
II. Physiologisches Institut, Universität Heidelberg, Germany.
Pflugers Arch. 1997 Sep;434(5):534-42. doi: 10.1007/s004240050433.
In smooth muscle, the state of prolonged contraction (latch state) is associated with very slow energy turnover and cycling of crossbridges that are dephosphorylated. A similar state may be reproduced in skinned fibres when the calcium-induced contraction is terminated by calcium removal with ethylenebis(oxonitrilo)tetraacetate (EGTA) and, during the slow relaxation that follows, force is maintained by dephosphorylated crossbridges that cycle slowly or not at all and may cooperatively reattach after detachment (Khromov et al. 1995, Biophys J 69:2611-2622). In guinea-pig skinned taenia coli that has been pretreated by prolonged incubation with caldesmon (5 microM), the rate of relaxation is approximately 1.6 times greater than in untreated controls, with half-times of relaxation being 1.3 and 2.1 min, respectively. In contrast, preloading the fibres with calponin does not accelerate relaxation. Preloading the fibres with caldesmon also accelerates the relaxation of skinned fibres from the state of rigor contraction when the latter is terminated by immersion into an ATP-containing relaxing solution or, in the presence of inorganic phosphate (Pi), also by flash-photolytic release of ATP from caged-ATP. Even in the latter case, relaxation is comparatively slow, possibly because of cooperative reattachment of dephosphorylated crossbridges which delays net crossbridge detachment and hence relaxation. We propose that by inhibition of cooperative reattachment caldesmon accelerates relaxation, even in the presence of Pi, and that the latch-like state of skinned fibres is supported by dephosphorylated cooperatively attaching crossbridges and may be regulated by the activity of caldesmon in the smooth muscle cell.
在平滑肌中,长时间收缩状态(闭锁状态)与能量转换非常缓慢以及去磷酸化的横桥循环有关。当用亚乙基双(氧代硝基)四乙酸(EGTA)去除钙来终止钙诱导的收缩时,在皮肤纤维中可能会重现类似状态,并且在随后的缓慢松弛过程中,力由缓慢循环或根本不循环的去磷酸化横桥维持,这些横桥在分离后可能会协同重新附着(Khromov等人,1995年,《生物物理杂志》69:2611 - 2622)。在用钙调蛋白(5 microM)长时间孵育预处理过的豚鼠皮肤结肠带中,松弛速率比未处理的对照大约快1.6倍,松弛半衰期分别为1.3分钟和2.1分钟。相比之下,用钙结合蛋白预加载纤维并不会加速松弛。用钙调蛋白预加载纤维还能加速皮肤纤维从强直收缩状态的松弛,当通过浸入含ATP的松弛溶液来终止强直收缩时,或者在存在无机磷酸盐(Pi)的情况下,也能通过从笼状ATP中闪光光解释放ATP来终止强直收缩。即使在后一种情况下,松弛也相对较慢,这可能是因为去磷酸化横桥的协同重新附着延迟了净横桥分离,从而延迟了松弛。我们提出,通过抑制协同重新附着,钙调蛋白即使在存在Pi的情况下也能加速松弛,并且皮肤纤维的类似闭锁状态由去磷酸化的协同附着横桥维持,并且可能受平滑肌细胞中钙调蛋白活性的调节。