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培养星形胶质细胞中通过缝隙连接实现的自细胞偶联:突起形成过程中细胞自动调节的新观点。

Autocellular coupling by gap junctions in cultured astrocytes: a new view on cellular autoregulation during process formation.

作者信息

Wolff J R, Stuke K, Missler M, Tytko H, Schwarz P, Rohlmann A, Chao T I

机构信息

Department of Anatomy, University of Göttingen, Germany.

出版信息

Glia. 1998 Sep;24(1):121-40. doi: 10.1002/(sici)1098-1136(199809)24:1<121::aid-glia12>3.0.co;2-t.

Abstract

Neocortical astrocytes make two types of gap junctions, intercellular ones create a functional syncytium, while reflexive gap junctions mediate autocellular coupling and serve unknown functions (Rohlmann and Wolff, 1996). Here, the question is addressed whether solitary astrocytes in vitro express connexin43 (Cx43) and establish gap junctions in the absence of intercellular contacts. In all media conditions tested, immunocytochemistry visualized Cx43-expression and gap junctions irrespective of the presence or absence of intercellular contacts. Reflexive gap junctions were associated with mechanical junctions (adherent spots and fascia adherens) connecting surface membranes and cytoskelal components, respectively. Both were characteristically located along incompletely separated borders between developing processes and/or branches. In addition, Cx43-immunoreactivity was found on some non-junctional membranes: i) intracellular vesicle clusters sited to forming processes and at the basis of filopodia; ii) the surface membrane of filopodial subpopulations usually appearing in bunches. Results suggest changes in the resumptive role of Cx43 in cultivated astrocytes: 1) Cx43 is not confined to intercellular gap junctions, it may even selectively compose reflexive ones; 2) from intracellular stores (vesicle aggregates), Cx43 may be incorporated into the surface membrane of filopodia; 3) by contacting other parts of the same cell surface (or neighboring cells), filopodia and membrane patches carrying Cx43-half channels may be essential in initial steps of gap junction formation; 4) the distribution of reflexive gap junctions is compatible with the hypothesis that autocellular coupling serves reorganization of cytoskeleton during the formation of cell processes and branches; 5) in general, gap junctions may be important for coordinating the cytoskeleton across intercellular contacts and within cells with complex shape.

摘要

新皮质星形胶质细胞形成两种类型的缝隙连接,细胞间的缝隙连接形成一个功能性合胞体,而自反性缝隙连接介导自身细胞偶联并发挥未知功能(罗尔曼和沃尔夫,1996年)。在此,研究了体外培养的单个星形胶质细胞是否表达连接蛋白43(Cx43)并在没有细胞间接触的情况下建立缝隙连接。在所有测试的培养基条件下,免疫细胞化学均显示出Cx43的表达和缝隙连接,无论是否存在细胞间接触。自反性缝隙连接与分别连接表面膜和细胞骨架成分的机械连接(附着斑和黏着带)相关。两者均典型地位于发育中的突起和/或分支之间未完全分离的边界处。此外,在一些非连接膜上发现了Cx43免疫反应性:i)位于形成中的突起和丝状伪足基部的细胞内囊泡簇;ii)通常成束出现的丝状伪足亚群的表面膜。结果表明Cx43在培养的星形胶质细胞中的恢复作用发生了变化:1)Cx43不仅局限于细胞间缝隙连接,甚至可能选择性地构成自反性缝隙连接;2)Cx43可能从细胞内储存库(囊泡聚集体)整合到丝状伪足的表面膜中;3)通过与同一细胞表面的其他部分(或相邻细胞)接触,携带Cx43半通道的丝状伪足和膜片可能在缝隙连接形成的初始步骤中起重要作用;4)自反性缝隙连接的分布与以下假设相符,即自身细胞偶联在细胞突起和分支形成过程中有助于细胞骨架的重组;5)一般而言,缝隙连接对于跨细胞间接触以及在形状复杂的细胞内协调细胞骨架可能很重要。

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