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非洲爪蟾卵母细胞减数分裂恢复过程中的皮质膜运输

Cortical membrane-trafficking during the meiotic resumption of Xenopus laevis oocytes.

作者信息

Dersch M A, Bement W M, Larabell C A, Mecca M D, Capco D G

机构信息

Department of Zoology, Arizona State University, Tempe 85287-1501.

出版信息

Cell Tissue Res. 1991 Feb;263(2):375-83. doi: 10.1007/BF00318779.

Abstract

Changes in the organization of membranous structures in the amphibian oocyte cortex were studied during the process of progesterone-induced meiotic resumption. Progesterone treatment of Xenopus laevis oocytes induced short term and longer term changes in the cortical membranes. In the short term, progesterone induced a burst of endocytosis mediated through coated pits and coated vesicles. Immuno-electron-microscopic localization of progesterone suggested that the progesterone receptor, bound to its ligand, is endocytosed during progesterone-induced endocytosis. Also demonstrated was the existence of a cisternal membrane network, referred to as the primordial cortical endoplasmic reticulum, which surrounds portions of the cortical granules in oocytes. The primordial cortical endoplasmic reticulum is more highly developed in the animal hemisphere than the vegetal hemisphere. Over the long term, during the meiotic resumption, more membrane is recruited into this network to form the cortical endoplasmic reticulum observed by others in the metaphase II egg. This evidence demonstrates that the cortex serves as a site for dynamic changes in membrane organization and that the most extensive changes occur in the animal hemisphere. These data support previous observations that the animal hemisphere is better structured for sperm penetration than is the vegetal hemisphere.

摘要

在孕酮诱导的减数分裂恢复过程中,对两栖类卵母细胞皮质中膜结构的组织变化进行了研究。用孕酮处理非洲爪蟾卵母细胞会引起皮质膜的短期和长期变化。短期内,孕酮诱导通过有被小窝和有被小泡介导的内吞作用爆发。孕酮的免疫电子显微镜定位表明,与配体结合的孕酮受体在孕酮诱导的内吞作用过程中被内吞。还证明了存在一种被称为原始皮质内质网的扁平膜网络,它围绕着卵母细胞中的部分皮质颗粒。原始皮质内质网在动物半球比植物半球发育得更完善。长期来看,在减数分裂恢复过程中,更多的膜被募集到这个网络中,形成了其他人在中期II卵中观察到的皮质内质网。这一证据表明,皮质是膜组织动态变化的场所,并且最广泛的变化发生在动物半球。这些数据支持了先前的观察结果,即动物半球比植物半球在结构上更有利于精子穿透。

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