首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Functional analysis of desmoplakin domains: specification of the interaction with keratin versus vimentin intermediate filament networks
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Functional analysis of desmoplakin domains: specification of the interaction with keratin versus vimentin intermediate filament networks

机译:Desmoplakin域的功能分析:与角蛋白和波形蛋白中间丝网络相互作用的规范

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摘要

We previously demonstrated that truncated desmoplakin I (DP I) molecules containing the carboxyl terminus specifically coalign with and disrupt both keratin and vimentin intermediate filament (IF) networks when overexpressed in tissue culture cells (Stappenbeck, T. S., and K. J. Green. J. Cell Biol. 116:1197-1209). These experiments suggested that the DP carboxyl-terminal domain is involved either directly or indirectly in linking IF with the desmosome. Using a similar approach, we have now investigated the behavior of ectopically expressed full-length DP I in cultured cells. In addition, we have further dissected the functional sequences in the carboxyl terminus of DP I that facilitate the interaction with IF networks. Transient transfection of a clone encoding full-length DP I into COS-7 cells produced protein that appeared in some cells to associate with desmosomes and in others to coalign with and disrupt IF. Deletion of the carboxyl terminus from this clone resulted in protein that still appeared capable of associating with desmosomes but not interacting with IF networks. As the amino terminus appeared to be dispensable for IF interaction, we made finer deletions in the carboxyl terminus of DP based on blocks of sequence similarity with the related molecules bullous pemphigoid antigen and plectin. We found a sequence at the very carboxyl terminus of DP that was necessary for coalignment with and disruption of keratin IF but not vimentin IF. Furthermore, the coalignment of specific DP proteins along keratin IF but not vimentin IF was correlated with resistance to extraction by Triton. The striking uncoupling resulting from the deletion of specific DP sequences suggests that the carboxyl terminus of DP interacts differentially with keratin and vimentin IF networks.
机译:我们先前证明,当在组织培养细胞中过表达时,含有羧基末端的截短的去氨铂蛋白I(DP I)分子与角蛋白和波形蛋白中间丝(IF)网络特异排列并破坏角蛋白和波形蛋白中间丝(IF)网络(Stappenbeck,TS和KJ Green。J. Cell Biol 116:1197-1209)。这些实验表明,DP羧基末端结构域直接或间接参与IF与桥粒的连接。使用类似的方法,我们现在研究了异位表达的全长DP I在培养细胞中的行为。此外,我们进一步剖析了DP I羧基末端的功能序列,这些功能序列促进了与IF网络的相互作用。将编码全长DP I的克隆瞬时转染到COS-7细胞中,产生的蛋白质在某些细胞中与桥粒结合,而在另一些细胞中与IF结合并破坏IF。从该克隆中删除羧基末端会产生仍能与桥粒结合但不与IF网络相互作用的蛋白质。由于氨基末端似乎对于IF相互作用是必不可少的,因此基于与相关分子大疱性类天疱疮抗原和Plectin的序列相似性,我们在DP的羧基末端进行了更精细的删除。我们在DP的羧基末端发现了一个序列,该序列与角蛋白IF的共比对和破坏是必需的,但波形蛋白IF却不是。此外,沿着角蛋白IF而不是波形蛋白IF的特定DP蛋白的共排列与Triton对提取的抗性相关。特定DP序列缺失导致的显着解偶联表明DP的羧基末端与角蛋白和波形蛋白IF网络差异性相互作用。

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