Lipscombe D, Madison D V, Poenie M, Reuter H, Tsien R W, Tsien R Y
Department of Cellular and Molecular Physiology, Yale University School of Medicine, New Haven, Connecticut 06510.
Neuron. 1988 Jul;1(5):355-65. doi: 10.1016/0896-6273(88)90185-7.
Changes in cytosolic free Ca2+ concentration [( Ca2+]i) due to Ca2+ entry or Ca2+ release from internal stores were spatially resolved by digital imaging with the Ca2+ indicator fura-2 in frog sympathetic neurons. Electrical stimulation evoked a rise in [Ca2+]i spreading radially from the periphery to the center of the soma. Elevated [K+]o also increased [Ca2+]i, but only in the presence of external Ca2+, indicating that Ca2+ influx through Ca2+ channels is the primary event in the depolarization response. Ca2+ release or uptake from caffeine-sensitive internal stores was able to amplify or attenuate the effects of Ca2+ influx, to generate continued oscillations in [Ca2+]i, and to persistently elevate [Ca2+]i above basal levels after the stores had been Ca2(+)-loaded.
在青蛙交感神经元中,利用钙离子指示剂fura - 2通过数字成像在空间上解析了由于钙离子内流或从内部储存库释放钙离子而导致的胞质游离钙离子浓度[Ca2+]i的变化。电刺激引起[Ca2+]i从胞体周边向中心呈放射状扩散升高。细胞外钾离子浓度升高也会增加[Ca2+]i,但仅在存在细胞外钙离子的情况下,这表明通过钙离子通道的钙离子内流是去极化反应中的主要事件。来自对咖啡因敏感的内部储存库的钙离子释放或摄取能够放大或减弱钙离子内流的作用,在[Ca2+]i中产生持续振荡,并在储存库被钙离子加载后使[Ca2+]i持续高于基础水平。