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未受精海胆卵的皮质肌动蛋白-膜细胞骨架:丝状肌动蛋白、非丝状肌动蛋白和卵血影蛋白的空间组织及关系分析

The cortical actin-membrane cytoskeleton of unfertilized sea urchin eggs: analysis of the spatial organization and relationship of filamentous actin, nonfilamentous actin, and egg spectrin.

作者信息

Bonder E M, Fishkind D J, Cotran N M, Begg D A

机构信息

Department of Anatomy and Cellular Biology, Harvard Medical School, Boston, Massachusetts 02115.

出版信息

Dev Biol. 1989 Aug;134(2):327-41. doi: 10.1016/0012-1606(89)90105-x.

Abstract

Whole mounts, cryosections, and isolated cortices of unfertilized sea urchin eggs were probed with fluorescent phalloidin, anti-actin and anti-egg spectrin antibodies to investigate the organizational state of the cortically associated actin-membrane cytoskeleton. Filamentous actin and egg spectrin were localized to the plasma membrane, within microvillar and nonmicrovillar domains. The nonmicrovillar filamentous actin was located immediately subjacent to the microvilli forming an extensive interconnecting network along the inner surface of the plasma membrane. The organization of this filamentous actin network precisely correlated with the positioning of the underlying cortical granules. The cortical cytoplasm did not contain any detectable filamentous actin, but instead contained a sequestered domain of nonfilamentous actin. Spectrin was localized to the cytoplasmic surface of the plasma membrane with concentrated foci co-localized with the filamentous actin present in microvilli. Spectrin was also observed to coat the surfaces of cortical granules as well as other populations of intracellular vesicles. On the basis of light microscopic morphology, intracellular distribution, and co-isolation with the egg cortex, some of these spectrin-coated organelles represent acidic vesicles. Identification of an elaborate organization of inter-related domains of actin (filamentous and nonfilamentous) and spectrin forming the cortical membrane cytoskeleton provides insight into the fundamental mechanisms for early membrane restructuring during embryogenesis. Additionally, the localization of spectrin to the surface of intracellular vesicles is indicative of its newly identified functional roles in membrane trafficking, membrane biogenesis and cellular differentiation.

摘要

用荧光鬼笔环肽、抗肌动蛋白和抗卵血影蛋白抗体对未受精海胆卵的整装标本、冰冻切片和分离的皮质进行检测,以研究皮质相关肌动蛋白-膜细胞骨架的组织状态。丝状肌动蛋白和卵血影蛋白定位于质膜、微绒毛和非微绒毛区域内。非微绒毛丝状肌动蛋白紧邻微绒毛,沿着质膜内表面形成广泛的相互连接网络。这种丝状肌动蛋白网络的组织与下层皮质颗粒的定位精确相关。皮质细胞质中未检测到任何丝状肌动蛋白,而是含有一个隔离的非丝状肌动蛋白区域。血影蛋白定位于质膜的细胞质表面,其浓缩焦点与微绒毛中存在的丝状肌动蛋白共定位。还观察到血影蛋白覆盖皮质颗粒以及其他细胞内囊泡群体的表面。基于光学显微镜形态、细胞内分布以及与卵皮质的共分离,这些血影蛋白包被的细胞器中的一些代表酸性囊泡。对形成皮质膜细胞骨架的肌动蛋白(丝状和非丝状)和血影蛋白相互关联结构域的精细组织的鉴定,为胚胎发生过程中早期膜重构的基本机制提供了见解。此外,血影蛋白定位于细胞内囊泡表面,表明其在膜运输、膜生物发生和细胞分化中具有新确定的功能作用。

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