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Breaking the connection: displacement of the desmosomal plaque protein desmoplakin from cell-cell interfaces disrupts anchorage of intermediate filament bundles and alters intercellular junction assembly

机译:断开连接:从细胞-细胞界面置换桥粒斑块蛋白桥粒铂蛋白破坏中间丝束的锚定并改变细胞间连接组装

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摘要

The desmosomal plaque protein desmoplakin (DP), located at the juncture between the intermediate filament (IF) network and the cytoplasmic tails of the transmembrane desmosomal cadherins, has been proposed to link IF to the desmosomal plaque. Consistent with this hypothesis, previous studies of individual DP domains indicated that the DP COOH terminus associates with IF networks whereas NH2-terminal sequences govern the association of DP with the desmosomal plaque. Nevertheless, it had not yet been demonstrated that DP is required for attaching IF to the desmosome. To test this proposal directly, we generated A431 cell lines stably expressing DP NH2-terminal polypeptides, which were expected to compete with endogenous DP during desmosome assembly. As these polypeptides lacked the COOH-terminal IF-binding domain, this competition should result in the loss of IF anchorage if DP is required for linking IF to the desmosomal plaque. In such cells, a 70-kD DP NH2- terminal polypeptide (DP-NTP) colocalized at cell-cell interfaces with desmosomal proteins. As predicted, the distribution of endogenous DP was severely perturbed. At cell-cell borders where endogenous DP was undetectable by immunofluorescence, there was a striking absence of attached tonofibrils (IF bundles). Furthermore, DP-NTP assembled into ultrastructurally identifiable junctional structures lacking associated IF bundles. Surprisingly, immunofluorescence and immunogold electron microscopy indicated that adherens junction components were coassembled into these structures along with desmosomal components and DP-NTP. These results indicate that DP is required for anchoring IF networks to desmosomes and furthermore suggest that the DP-IF complex is important for governing the normal spatial segregation of adhesive junction components during their assembly into distinct structures.
机译:已经提出了位于中间丝(IF)网络和跨膜桥粒钙黏着蛋白的细胞质尾部之间的交界处的桥粒斑蛋白桥粒蛋白(DP),以将IF与桥粒斑连接。与此假设相符,以前对单个DP结构域的研究表明,DP COOH末端与IF网络相关,而NH2末端序列控制DP与桥粒斑的结合。然而,尚未证明将IF连接到桥粒上需要DP。为了直接测试该建议,我们生成了稳定表达DP NH2末端多肽的A431细胞系,该多肽有望在桥粒组装过程中与内源性DP竞争。由于这些多肽缺少COOH末端的IF结合结构域,如果将IF连接至桥粒斑块需要DP,则这种竞争将导致IF锚定的丧失。在此类细胞中,一个70 kD DP NH2-末端多肽(DP-NTP)与桥粒蛋白共定位在细胞之间。如所预测的,内源DP的分布受到严重干扰。在通过免疫荧光无法检测到内源性DP的细胞边界处,明显没有附着的原纤维(IF束)。此外,DP-NTP组装成缺乏相关的IF束的超结构可识别的连接结构。出乎意料的是,免疫荧光和免疫金电子显微镜表明粘附的连接组分与桥粒组分和DP-NTP一起共组装到这些结构中。这些结果表明DP是将IF网络锚定在桥粒上所必需的,并且进一步表明,DP-IF复合物对于控制粘合剂连接组分在组装成不同结构时的正常空间隔离很重要。

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