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电鳐电细胞:研究受体-细胞骨架相互作用的模型系统。

The Torpedo electrocyte: a model system for the study of receptor-cytoskeleton interactions.

作者信息

Kordeli E, Cartaud J, Nghiêm H O, Changeux J P

出版信息

J Recept Res. 1987;7(1-4):71-88. doi: 10.3109/10799898709054980.

Abstract

We have used the electrocyte of Torpedo electric organ as a model system for the study of AchR stabilization in the postsynaptic membrane. Attention was focused on membrane cytoskeleton interactions in particular on a peripheral protein of 43 KD that is believed to participate in AchR immobilization. Using immunocytochemical methods, we have shown that the cortical skeleton in Torpedo electrocyte displays a local differentiation proper for each specialized domain of the plasma membrane. In the postsynaptic membrane, characterized by an accumulation and a geometrical organization of the receptors in the plane of the membrane, the 43 KD protein participates in a submembraneous coating or "postsynaptic densities" that strictly codistribute with the AchR. The 43 KD protein might also account for the anchoring of intermediate-sized filaments. The organization of the postsynaptic domain appears readily different from that of the non-innervated one where the membrane folds are maintained by a cortical meshwork of cytoskeletal proteins such as ankyrin, spectrin and oligomeric actin. In conclusion, the asymmetrical organization of the cortical skeleton in the electrocyte offers a unique opportunity for the study of the specific aspects of membrane-skeleton interactions that take place in the postsynaptic domain.

摘要

我们已将电鳐电器官的电细胞用作研究突触后膜中乙酰胆碱受体(AchR)稳定性的模型系统。研究重点聚焦于膜细胞骨架相互作用,尤其是一种被认为参与AchR固定的43千道尔顿外周蛋白。运用免疫细胞化学方法,我们发现电鳐电细胞中的皮质骨架在质膜的每个特化区域都呈现出局部差异。在突触后膜中,其特征是受体在膜平面上的积累和几何组织,43千道尔顿蛋白参与形成一种与AchR严格共分布的膜下包被或“突触后致密物”。43千道尔顿蛋白也可能是中间丝锚定的原因。突触后区域的组织与未受神经支配区域的组织明显不同,在未受神经支配区域,膜褶皱由细胞骨架蛋白如锚蛋白、血影蛋白和寡聚肌动蛋白的皮质网络维持。总之,电细胞中皮质骨架的不对称组织为研究突触后区域发生的膜 - 骨架相互作用的特定方面提供了独特机会。

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