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非洲爪蟾卵母细胞成熟过程中激活反应性的起始与皮质内质网的形成同时发生。

The onset of activation responsiveness during maturation coincides with the formation of the cortical endoplasmic reticulum in oocytes of Xenopus laevis.

作者信息

Charbonneau M, Grey R D

出版信息

Dev Biol. 1984 Mar;102(1):90-7. doi: 10.1016/0012-1606(84)90177-5.

Abstract

Immature, Stage VI oocytes of Xenopus laevis fail to activate (i.e., to propagate a cortical reaction and elevate a fertilization envelope) when pricked or exposed to A23187. We determined the times during maturation when immature oocytes treated with progesterone in vitro developed the capacity to respond to pricking and to ionophore. Responsiveness to ionophore first appears at about 3.5-4.5 hr after progesterone treatment; all oocytes are activated by 8-9 hr after progesterone. The capacity to respond to pricking appears about 1.0-1.5 hr after first signs of ionophore responsiveness. We examined the cortical endoplasmic reticulum (CER) by TEM to determine whether the morphology of this component could be correlated with the development of responsiveness during maturation. Fully mature oocytes exhibit an extensive CER that (1) forms a "shell" around most cortical granules, (2) appears to interconnect cortical granules, and (3) forms junctions with the plasma membrane. The CER-plasma membrane junctions are especially obvious in preparations of isolated cortex. The elaborate CER is not present in immature oocytes. It first appears during maturation of progesterone-treated oocytes at 4.5-5.0 hr, coincident with the time when maturing oocytes develop their responsiveness to ionophore and to pricking. This temporal correlation is consistent with the hypothesis that the CER is one of the components required for regulation of intracellular free calcium in oocytes.

摘要

非洲爪蟾未成熟的VI期卵母细胞在被刺破或暴露于A23187时无法激活(即引发皮层反应并抬高受精膜)。我们确定了体外经孕酮处理的未成熟卵母细胞在成熟过程中对刺破和离子载体产生反应的能力出现的时间。对离子载体的反应性在孕酮处理后约3.5 - 4.5小时首次出现;在孕酮处理后8 - 9小时所有卵母细胞均被激活。对刺破的反应能力在离子载体反应性的最初迹象出现后约1.0 - 1.5小时出现。我们通过透射电子显微镜检查皮层内质网(CER),以确定该成分的形态是否与成熟过程中反应性的发展相关。完全成熟的卵母细胞表现出广泛的CER,其(1)在大多数皮层颗粒周围形成一个“壳”,(2)似乎将皮层颗粒相互连接,并且(3)与质膜形成连接。CER - 质膜连接在分离的皮层制备物中尤为明显。精细的CER在未成熟卵母细胞中不存在。它在孕酮处理的卵母细胞成熟过程中于4.5 - 5.0小时首次出现,与成熟卵母细胞对离子载体和刺破产生反应的时间一致。这种时间上的相关性与CER是卵母细胞中调节细胞内游离钙所需的成分之一这一假设一致。

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