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非洲爪蟾卵母细胞中由三磷酸肌醇介导的宏观和基本钙信号的半球不对称性。

Hemispheric asymmetry of macroscopic and elementary calcium signals mediated by InsP3 in Xenopus oocytes.

作者信息

Callamaras N, Sun X P, Ivorra I, Parker I

机构信息

Laboratory of Cellular and Molecular Neurobiology, Department of Psychobiology, University of California Irvine, CA 92697, USA.

出版信息

J Physiol. 1998 Sep 1;511 ( Pt 2)(Pt 2):395-405. doi: 10.1111/j.1469-7793.1998.395bh.x.

Abstract
  1. The mechanisms underlying hemispheric asymmetry of the inositol 1, 4,5-trisphosphate (InsP3)-calcium signalling pathway in Xenopus oocytes were examined by fluorescence imaging of calcium signals and recording calcium-activated Cl- currents (ICl,Ca) evoked by intracellular calcium injections and photorelease of InsP3. 2. The maximal ICl,Ca evoked by strong photorelease of InsP3 was 8 times greater in the animal than the vegetal hemisphere, but the average threshold amounts of InsP3 required to evoke detectable currents were similar in each hemisphere. 3. Currents evoked by injections of calcium were about 2.5 times greater near the animal pole than near the vegetal pole, whereas fluorescence signals evoked by injections were similar in each hemisphere. 4. Calcium waves were evoked by photolysis flashes of similar strengths in both hemispheres of albino oocytes, but peak calcium levels evoked by supramaximal stimuli were 70 % greater in the animal hemisphere. 5. Elementary calcium release events (puffs) in the animal hemisphere had amplitudes about double that in the vegetal hemisphere, and more often involved coupled release from adjacent sites. Calcium release sites were more closely packed in the animal hemisphere, with a mean spacing of about 1.5 micro m compared with 2.25 micro m in the vegetal hemisphere. 6. The larger amplitude of currents mediated by InsP3 in the animal hemisphere, therefore, involves an increased flux of calcium at individual release units, a more dense packing of release units and a higher density of Cl- channels.
摘要
  1. 通过钙信号的荧光成像以及记录细胞内注射钙和光释放肌醇三磷酸(InsP3)所诱发的钙激活氯电流(ICl,Ca),研究了非洲爪蟾卵母细胞中肌醇1,4,5 - 三磷酸(InsP3) - 钙信号通路半球不对称性的潜在机制。2. InsP3强烈光释放所诱发的最大ICl,Ca在动物半球比植物半球大8倍,但诱发可检测电流所需的InsP3平均阈值量在每个半球相似。3. 注射钙所诱发的电流在动物极附近比植物极附近大约大2.5倍,而注射所诱发的荧光信号在每个半球相似。4. 在白化卵母细胞的两个半球中,相似强度的光解闪光诱发了钙波,但超最大刺激所诱发的峰值钙水平在动物半球高70%。5. 动物半球中的基本钙释放事件(钙瞬变)的幅度约为植物半球的两倍,并且更常涉及相邻位点的耦联释放。钙释放位点在动物半球中排列更紧密,平均间距约为1.5微米,而在植物半球中为2.25微米。6. 因此,动物半球中由InsP3介导的电流幅度更大,涉及单个释放单元处钙通量增加、释放单元更密集的排列以及更高密度的氯通道。

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