首页> 外文期刊>Journal of cell biology >Continual assembly of half-desmosomal structures in the absence of cell contacts and their frustrated endocytosis: a coordinated Sisyphus cycle.
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Continual assembly of half-desmosomal structures in the absence of cell contacts and their frustrated endocytosis: a coordinated Sisyphus cycle.

机译:在没有细胞接触和沮丧的内吞作用的情况下,半桥体结构的连续装配:一个协调的西西弗斯循环。

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It is widely assumed that the coordinate assembly of desmosomal cadherins and plaque proteins into desmosome-typical plaque-coated membrane domains, capable of anchoring intermediate-sized filaments (IF), requires cell-to-cell contacts and a critical extracellular Ca2+ concentration. To test this hypothesis we studied several cell lines grown for years in media with less than 0.1 mM Ca2+ to steady-state low Ca2+ medium (LCM) conditions, particularly the human keratinocyte line HaCaT devoid of any junctional cell contact (HaCaT-L cells). Using immunolocalization and vesicle fractionation techniques, we found that the transmembrane glycoprotein, desmoglein (Dsg), colocalized with the plaque proteins, desmoplakin and plakoglobin. The sites of coassembly of desmosomal molecules in HaCaT-L cells as well as in HaCaT cells directly brought into LCM were identified as asymmetric plaque-coated plasma membrane domains (half-desmosomes) or as special plaque-associated cytoplasmic vesicles, most of which had formed endocytotically. The surface exposure of Dsg in these half-desmosomes was demonstrated by the binding, in vivo, of antibodies specific for an extracellular Dsg segment which also could cross-bridge them into symmetric quasi-desmosomes. Otherwise, these half-desmosomes were shown in LCM to be taken up endocytotically. Half-desmosomal assemblies were also seen in uncoupled cells in normal Ca2+ medium. We conclude that, in the absence of intercellular contacts, assembly of desmosomal proteins at the cell surface takes place, resulting in transient half-desmosomes which then, in LCM and without a stable partner connection to the adjacent cell, can be endocytotically resumed. This frustrated cycle of synthesis and assembly maintains an ensemble of molecules characteristic of epithelial differentiation and the potential to form desmosomes, even when the final junctional structure cannot be formed. We propose that these half-desmosomal structures are general cell structures of epithelial and other desmosome-forming cells.
机译:人们普遍认为,将桥粒钙黏着蛋白和噬菌斑蛋白协调组装为能够固定中等大小细丝(IF)的桥粒样斑块包被的膜结构域,需要细胞与细胞之间的接触以及关键的细胞外Ca2 +浓度。为了验证这一假设,我们研究了几种在低于0.1 mM Ca2 +的培养基中生长多年的细胞系,直到稳态低Ca2 +培养基(LCM)的条件,特别是没有连接细胞接触的人角质形成细胞系HaCaT(HaCaT-L细胞) 。使用免疫定位和囊泡分级分离技术,我们发现跨膜糖蛋白,desmoglein(Dsg)与斑块蛋白,desmoplakin和plakoglobin共定位。 HaCaT-L细胞以及直接引入LCM的HaCaT细胞中桥粒分子的共装配位点被鉴定为不对称斑块包被的质膜结构域(半桥粒)或特殊的斑块相关细胞质囊泡,其中大多数具有内吞形成。在体内,对细胞外Dsg片段特异的抗体的结合证明了Dsg在这些半桥粒体中的表面暴露,该抗体也可以将它们交叉桥连成对称的半桥粒体。否则,这些半桥粒在LCM中显示为被胞吞摄取。在正常的Ca2 +培养基中,未结合的细胞中也观察到半桥粒组装。我们得出的结论是,在没有细胞间接触的情况下,桥粒蛋白会在细胞表面发生组装,从而导致短暂的半桥粒,然后在LCM中并且与相邻细胞之间没有稳定的伴侣连接,可以进行内吞恢复。即使无法形成最终的连接结构,合成和组装的这种受挫的循环仍保持着上皮分化特征性分子和形成桥粒的潜力的整体。我们提出,这些半桥粒结构是上皮和其他桥粒形成细胞的一般细胞结构。

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