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非洲爪蟾卵母细胞中的激活电流波。

The wave of activation current in the Xenopus egg.

作者信息

Kline D, Nuccitelli R

出版信息

Dev Biol. 1985 Oct;111(2):471-87. doi: 10.1016/0012-1606(85)90499-3.

Abstract

A ring-shaped wave of inward current, the activation current, propagates across the Xenopus egg from the site of activation during the positive phase of the activation or fertilization potential. This activation current wave is due to an increased chloride conductance and reflects the propagated of the ionic channels responsible for the fertilization potential. These channels are present in the animal and vegetal hemispheres; however, the magnitude of the activation current is 6-7 times greater in the animal hemisphere. Outward current of a smaller magnitude and spread out over a larger area precedes and follows the inward current except at the point of activation where the current is first inward. The inward current wave is detected in all eggs activated by sperm and in eggs activated by pricking with a sharp needle, by application of the Ca2+ ionophore, A23187, and by intracellular iontophoresis of Ca2+ or inositol 1,4,5-trisphosphate. Reduction of the inward current by TMB-8, which blocks intracellular calcium release in some cells, suggests that the activation current channels are calcium sensitive and that the current wave is concomitant with a wave of increased intracellular calcium initiated by sperm-egg interaction. The wave of cortical granule exocytosis and two or more contraction waves follow the current wave.

摘要

一股呈环形的内向电流,即激活电流,在激活或受精电位的正相期间从激活位点穿过非洲爪蟾卵传播开来。这种激活电流波是由于氯离子电导增加所致,反映了负责受精电位的离子通道的传播。这些通道存在于动物半球和植物半球;然而,动物半球的激活电流幅度要大6 - 7倍。除了在激活点电流首先为内向电流外,在向内电流之前和之后会有幅度较小且分布在更大区域的外向电流。在所有被精子激活的卵以及通过用尖针穿刺、应用钙离子载体A23187、细胞内注射钙离子或肌醇1,4,5 - 三磷酸激活的卵中都能检测到内向电流波。TMB - 8可减少内向电流,它能在某些细胞中阻断细胞内钙释放,这表明激活电流通道对钙敏感,并且电流波与精子 - 卵相互作用引发的细胞内钙增加波同时出现。皮层颗粒胞吐波以及两个或更多的收缩波跟随电流波出现。

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