Gurney A M, Charnet P, Pye J M, Nargeot J
Department of Pharmacology, United Medical School, St Thomas's Hospital, London, UK.
Nature. 1989 Sep 7;341(6237):65-8. doi: 10.1038/341065a0.
The entry of calcium ions into cells through voltage-activated Ca2+ channels in the plasma membrane triggers many important cellular processes. The activity of these channels is regulated by several hormones and neurotransmitters, as well as intracellular messengers such as Ca2+ itself (for examples, see refs 1-9). In cardiac muscle, myoplasmic Ca2+ has been proposed to potentiate Ca2+ influx, although a direct effect of Ca2+ on these channels has not yet been demonstrated. Photosensitive 'caged-Ca2+' molecules such as nitr-5, however, provide powerful tools for investigating possible regulatory roles of Ca2+ on the functioning of Ca2+ channels. Because its affinity for Ca2+ is reduced by irradiation, nitr-5 can be loaded into cells and induced to release Ca2+ with a flash of light. By using this technique we found that the elevation of intracellular Ca2+ concentration directly augmented Ca2+-channel currents in isolated cardiac muscle cells from both frog and guinea pig. The time course of the current potentiation was similar to that seen with beta-adrenergic stimulation. Thus Ca2+ may work through a similar pathway, involving phosphorylation of a regulatory Ca2+-channel protein. This mechanism is probably important for the accumulation of Ca2+ and the amplification of the contractile response in cardiac muscle, and may have a role in other excitable cells.
钙离子通过质膜上的电压激活Ca2+通道进入细胞,引发许多重要的细胞过程。这些通道的活性受多种激素、神经递质以及细胞内信使如Ca2+本身的调节(例如,见参考文献1 - 9)。在心肌中,有人提出肌浆Ca2+可增强Ca2+内流,尽管Ca2+对这些通道的直接作用尚未得到证实。然而,诸如nitr - 5等光敏“笼状Ca2+”分子为研究Ca2+对Ca2+通道功能可能的调节作用提供了有力工具。由于其对Ca2+的亲和力在光照下会降低,nitr - 5可被载入细胞,并通过闪光诱导释放Ca2+。利用该技术,我们发现细胞内Ca2+浓度的升高直接增强了来自青蛙和豚鼠的离体心肌细胞中的Ca2+通道电流。电流增强的时间进程与β - 肾上腺素能刺激时相似。因此,Ca2+可能通过类似的途径起作用,涉及一种调节性Ca2+通道蛋白的磷酸化。这种机制可能对心肌中Ca2+的积累和收缩反应的放大很重要,并且可能在其他可兴奋细胞中起作用。