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首页> 外文期刊>Journal of cell biology >An elevated free cytosolic Ca2+ wave follows fertilization in eggs of the frog, Xenopus laevis.
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An elevated free cytosolic Ca2+ wave follows fertilization in eggs of the frog, Xenopus laevis.

机译:施肥的青蛙,非洲爪蟾卵中的游离胞质Ca 2+波升高。

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摘要

The eggs of most or all animals are thought to be activated after fertilization by a transient increase in free cytosolic Ca2+ concentration ([Ca2+]i). We have applied Ca2+-selective microelectrodes to detect such an increase in fertilized eggs of the frog, Xenopus laevis. As observed with an electrode in the animal hemisphere, [Ca2+]i increased from 0.4 to 1.2 microM over the course of 2 min after fertilization, and returned to its original value during the next 10 min. No further changes in [Ca2+]i were detected through the first cleavage division. In eggs impaled with two Ca2+ electrodes, the Ca2+ pulse was observed to travel as a wave from the animal to the vegetal hemisphere, propagating at a rate of approximately 10 microns/s across the animal hemisphere. The apparent delay between the start of the fertilization potential and initiation of the Ca2+ wave at the sperm entry site as approximately 1 min. Through these observations describe only the behavior of subcortical [Ca2+]i, we suggest that our data represent the subcortical extension of the cortical Ca2+ wave thought to trigger cortical granule exocytosis, and we present evidence that both the timing and magnitude of the Ca2+ pulse we observed are consistent with this identity. This first quantification of subcortical [Ca2+]i during fertilization indicates that the Ca2+ transient is available to regulate processes (e.g., protein synthesis) in the subcortical cytosol.
机译:人们认为,大多数或所有动物的卵在受精后均会由于游离胞质Ca2 +浓度([Ca2 +] i)的短暂增加而被激活。我们已经应用了Ca2 +选择性微电极来检测青蛙Xenopus laevis受精卵的这种增加。如用动物半球中的电极观察到的,[Ca2 +] i在受精后2分钟内从0.4 microM增加到1.2 microM,并在接下来的10分钟内恢复到其原始值。通过第一切割分裂未检测到[Ca 2+] i的进一步变化。在用两个Ca2 +电极刺穿的卵中,观察到Ca2 +脉冲以波的形式从动物传播到植物半球,并以大约10微米/ s的速度在动物半球中传播。受精电位开始与精子进入部位Ca2 +波开始之间的表观延迟约为1分钟。通过这些观察仅描述了皮质下[Ca2 +] i的行为,我们建议我们的数据代表了皮质Ca2 +波在皮质下的延伸,认为触发了皮质颗粒的胞吐作用,并且我们提供了证据表明,Ca2 +脉冲的时间和强度观察到与此身份一致。受精过程中皮层下[Ca2 +] i的首次定量表明,Ca2 +瞬变可用于调节皮层下细胞质中的过程(例如蛋白质合成)。

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