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镁对横纹肌皮肤纤维激活的影响。

Magnesium effects on activation of skinned fibers from striated muscle.

作者信息

Stephenson E W

出版信息

Fed Proc. 1981 Oct;40(12):2662-6.

PMID:6269902
Abstract

The intracellular Ca movements that control contraction and relaxation of striated muscle are regulated by the membrane potential and influenced by Mg2+. In skinned fibers, the internal composition can be manipulated directly by Ca movements estimated from isometric force transients, net changes in sarcoplasmic reticulum (SR) Ca, and 45Ca flux between fiber and bath. Stimulated Ca release, unlike unstimulated 45Ca efflux at low external [Ca2+], is highly [Mg2+]-sensitive at 20 C. Force and tracer measurements indicate three major sites of Mg2+-Ca2+ interaction in situ: Mg2+ can stimulate the SR active Ca transport system, inhibit a Ca2+-dependent Ca efflux pathway of SR, and shift the force-[Ca2+] relation, presumably by reducing Ca2+ binding to myofilament regulatory sites. These mechanisms constrain the resting Ca flux and are adaptive during relaxation. However, analysis of CI-stimulated 45Ca release and reaccumulation suggests that the depolarization process may inhibit Mg2+-dependent Ca influx, the membrane potential controlling both efflux and influx; recent studies on voltage-clamped cut fibers support this hypothesis. The Ca2+ and Mg2+ dependence of caffeine-stimulated 45Ca efflux suggests that Mg2+ inhibition of the Ca2+-dependent efflux pathway is small during rapid Ca2+ efflux. Therefore, both Mg2+ mechanisms, which minimize net release, may be reversed during normal activation.

摘要

控制横纹肌收缩和舒张的细胞内钙运动受膜电位调节,并受镁离子影响。在去皮纤维中,内部成分可通过根据等长力瞬变估计的钙运动、肌浆网(SR)钙的净变化以及纤维与浴液之间的45钙通量直接进行调控。与低细胞外[Ca2+]时未受刺激的45钙外流不同,在20℃时,受刺激的钙释放对[Mg2+]高度敏感。力和示踪剂测量表明,原位存在镁离子-钙离子相互作用的三个主要位点:镁离子可刺激SR活性钙转运系统,抑制SR的一种钙依赖性钙外流途径,并改变力-钙关系,推测是通过减少钙离子与肌丝调节位点的结合。这些机制限制了静息钙通量,在舒张过程中具有适应性。然而,对氯离子刺激的45钙释放和再积累的分析表明,去极化过程可能会抑制镁离子依赖性钙内流,膜电位同时控制外流和内流;最近对电压钳制的切断纤维的研究支持了这一假设。咖啡因刺激的45钙外流对钙离子和镁离子的依赖性表明,在快速钙外流期间,镁离子对钙依赖性外流途径的抑制作用较小。因此,在正常激活过程中,这两种使净释放最小化的镁离子机制可能会被逆转。

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