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微丝和中间丝的紊乱会干扰MDCK上皮细胞中桥粒的组装和稳定性。

Disorganization of microfilaments and intermediate filaments interferes with the assembly and stability of desmosomes in MDCK epithelial cells.

作者信息

Pasdar M, Li Z

机构信息

Department of Anatomy and Cell Biology, Faculty of Medicine, University of Alberta, Edmonton, Canada.

出版信息

Cell Motil Cytoskeleton. 1993;26(2):163-80. doi: 10.1002/cm.970260207.

Abstract

To investigate the possible role(s) of cytoskeletal elements in desmosome assembly we have studied the effects of cytostatic drugs on the assembly of desmosomes in MDCK epithelial cells. We showed previously [Pasdar et al.: Cell Motil. Cytoskeleton 23:201-213, 1992] that selective disruption of microtubules has no effect on desmosome assembly. Here, we have treated MDCK cells with cytochalasin B and a combination of cytochalasin B and nocodazole and analysed the effects of desmosome assembly. Immunofluorescence analysis of MDCK cultures following drug treatment indicated complete disruption of actin microfilaments and disorganization of cytokeratin intermediate filaments. Biochemical analysis of newly synthesized desmosomal membrane core glycoproteins as well as the cell adhesion protein E-cadherin revealed no effect of these drugs on the kinetics of synthesis, intracellular processing, or transport to the plasma membrane either in the presence or absence of cell-cell contact. However, morphological analyses revealed a significant disruption in the spatial organization of desmosomal proteins and E-cadherin. Drug treatment in the absence of cell-cell contact resulted in the disruption of the normally observed homogeneous punctate staining pattern and appearance of aggregate staining. Induction of cell-cell contact in these cultures resulted in redistribution of some of the aggregate staining to the plasma membrane. In contrast to control cultures, significant amount of intracellular staining was retained for all desmosomal proteins. Biochemical analyses of turnover rates of newly synthesized desmosomal proteins indicated a significant decrease in metabolic stability of these proteins while the turnover rate of E-cadherin was not significantly different among control and drug-treated cultures. Taken together, these results suggest that intact actin and cytokeratin filaments are necessary for the stability, efficient assembly, and spatial organization of the junctional components at the membrane. The regulatory role of cytokeratins and actin filaments in assembly and stability of desmosomes on the plasma membrane is discussed.

摘要

为了研究细胞骨架成分在桥粒组装中的可能作用,我们研究了细胞抑制药物对MDCK上皮细胞中桥粒组装的影响。我们之前已经表明[帕斯达等人:《细胞运动与细胞骨架》23:201 - 213,1992],微管的选择性破坏对桥粒组装没有影响。在此,我们用细胞松弛素B以及细胞松弛素B和诺考达唑的组合处理MDCK细胞,并分析其对桥粒组装的影响。药物处理后的MDCK培养物的免疫荧光分析表明肌动蛋白微丝完全被破坏,细胞角蛋白中间丝紊乱。对新合成的桥粒膜核心糖蛋白以及细胞粘附蛋白E - 钙粘蛋白的生化分析表明,无论有无细胞 - 细胞接触,这些药物对合成动力学、细胞内加工或向质膜的转运均无影响。然而,形态学分析显示桥粒蛋白和E - 钙粘蛋白的空间组织受到显著破坏。在无细胞 - 细胞接触的情况下进行药物处理导致正常观察到的均匀点状染色模式被破坏,出现聚集染色。在这些培养物中诱导细胞 - 细胞接触导致一些聚集染色重新分布到质膜。与对照培养物相比,所有桥粒蛋白均保留了大量细胞内染色。对新合成的桥粒蛋白周转率的生化分析表明这些蛋白的代谢稳定性显著降低,而E - 钙粘蛋白在对照和药物处理培养物中的周转率没有显著差异。综上所述,这些结果表明完整的肌动蛋白和细胞角蛋白丝对于膜上连接成分的稳定性、有效组装和空间组织是必需的。本文讨论了细胞角蛋白和肌动蛋白丝在质膜上桥粒组装和稳定性中的调节作用。

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