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钙离子对骨骼肌中磷酸盐释放动力学的影响。

Effects of Ca2+ on the kinetics of phosphate release in skeletal muscle.

作者信息

Walker J W, Lu Z, Moss R L

机构信息

Department of Physiology, University of Wisconsin, Madison 53706.

出版信息

J Biol Chem. 1992 Feb 5;267(4):2459-66.

PMID:1733945
Abstract

The process of phosphate dissociation during the muscle cross-bridge cycle has been investigated by photoliberation of inorganic phosphate (Pi) within skinned fibers of rabbit psoas muscle. This permitted a test of the idea that Ca2+ controls muscle contraction by regulating the Pi release step of the cycle. Photoliberation of Pi from structurally distinct "caged" Pi precursors initiated a rapid tension decline of up to 12% of active tension, and this was followed by a slower tension decline. The apparent rate constant of the fast phase, kPi, depended on both [Pi] and [Ca2+], whereas the slow phase generally occurred at 2-4 s-1. At maximal Ca2+, kPi increased in a nonlinear manner from 43 +/- 2 s-1 to 118 +/- 7 s-1, as Pi was raised from 0.9 to 12 mM. This was analyzed in terms of a three-state kinetic model in which a force-generating transition is coupled to Pi dissociation from the cross-bridge. As Ca(2+)-activated tension was reduced from maximal (Pmax) to 0.1 Pmax, (i) kPi decreased by up to 2.5-fold, (ii) the relative amplitude of the rapid phase increased 2-fold, and (iii) the relative amplitude of the slow phase increased about 6-fold. Changes in the rapid phase are compatible with Ca2+ influencing an apparent equilibrium constant for the force-generating transition. By comparison, kPi was faster than the rate constant of tension redevelopment, ktr, and was influenced less by Ca2+. Ca2+ effects on the caged Pi transient cannot account for the large effects of Ca2+ on actomyosin ATPase rates or cross-bridge cycling kinetics but may be a manifestation of reciprocal interactions between the thin filament and force-generating cross-bridges, and may represent Ca2+ regulation of the distribution of cross-bridges between non-force-and force-generating states.

摘要

通过在兔腰大肌的去膜纤维中光释放无机磷酸(Pi),研究了肌肉横桥循环中磷酸解离的过程。这使得能够检验钙离子通过调节循环中Pi释放步骤来控制肌肉收缩这一观点。从结构不同的“笼化”Pi前体光释放Pi引发了快速张力下降,可达主动张力的12%,随后是较慢的张力下降。快速相的表观速率常数kPi取决于[Pi]和[Ca2+],而慢相通常发生在2 - 4 s-1。在最大钙离子浓度下,随着Pi从0.9 mM升高到12 mM,kPi以非线性方式从43±2 s-1增加到118±7 s-1。这是根据一个三态动力学模型进行分析的,其中力产生转变与Pi从横桥解离相耦合。当钙离子激活的张力从最大(Pmax)降低到0.1 Pmax时(i)kPi降低多达2.5倍,(ii)快速相的相对幅度增加2倍,(iii)慢相的相对幅度增加约6倍。快速相的变化与钙离子影响力产生转变的表观平衡常数一致。相比之下,kPi比张力重建的速率常数ktr快,并且受钙离子的影响较小。钙离子对笼化Pi瞬变的影响不能解释钙离子对肌动球蛋白ATP酶速率或横桥循环动力学的巨大影响,但可能是细肌丝与力产生横桥之间相互作用的表现,并且可能代表钙离子对非力产生和力产生状态之间横桥分布的调节。

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