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Molecular Basis of the Core Structure of Tight Junctions

机译:紧密连接核心结构的分子基础

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摘要

The morphological feature of tight junctions (TJs) fits well with their functions. The core of TJs is a fibril-like proteinaceous structure within the lipid bilayer, the so-called TJ strands. TJ strands in apposing plasma membranes associate with each other to eliminate the intercellular space. A network of paired TJ strands generates a continuous belt that circumscribes each cell to establish the diffusion barrier to the solutes in the paracellular pathway throughout the cellular sheet. Identification and characterization of TJ-associated proteins during the last two decades has unveiled the nature of TJ strands and how they are spatially organized. The interplay between integral membrane proteins, claudins, and cytoplasmic plaque proteins, ZO-1/ZO-2, is critical for TJ formation and function.
机译:紧密连接(TJ)的形态特征与它们的功能非常吻合。 TJ的核心是脂质双层中的纤维状蛋白质结构,即所谓的TJ链。相对质膜中的TJ链彼此结合以消除细胞间空间。成对的TJ链网络生成一条连续的带,该带围绕每个细胞以建立对整个细胞层中副细胞途径中的溶质的扩散屏障。在过去的二十年中,TJ相关蛋白的鉴定和表征揭示了TJ链的性质以及它们在空间上的组织方式。完整的膜蛋白,claudin和胞浆蛋白ZO-1 / ZO-2之间的相互作用对于TJ的形成和功能至关重要。

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