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首页> 外文期刊>American Journal of Physiology >Molecular structure and assembly of the tight junction.
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Molecular structure and assembly of the tight junction.

机译:分子结构与组装紧密结合。

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Polarized epithelial cells separate two extremely different cellular milieus. The tight junction (TJ) is the most apical component of the junctional complex and serves as the permeability barrier between these environments. The tight junctional complex appears to be a dynamic and regulated structure. Some of its protein components have been identified and include the transmembrane protein occludin. Nontransmembrane proteins on the cytosolic leaflet including ZO-1, ZO-2, cingulin, 7H6, and several unidentified phosphoproteins are also believed to be part of the TJ. Interactions of some of these proteins with the actin cytoskeleton are a major determinant of TJ structure and may also play a role in the regulation of TJ assembly. Recent progress using the "calcium switch" and the "ATP depletion-repletion" model of TJ formation offers new insight regarding how these structures form. TJ biogenesis appears to be regulated, in part, by classic signal transduction pathways involving heterotrimeric G proteins, release of intracellular Ca2+, and activation of protein kinase C. Although many of the details of the signaling pathways have yet to be defined, these observations may provide insight into how TJs form during tubular development. Furthermore, it may be possible to suggest potential therapeutic targets for intervention in a variety of diseases (e.g., ischemia, toxic injury to the kidney and other epithelial tissue) where TJ integrity has been compromised and reassembly is required.
机译:极化的上皮细胞将两个极为不同的细胞环境分开。紧密连接(TJ)是连接复合体的最顶端组件,并充当这些环境之间的渗透屏障。紧密的连接复合物似乎是动态且受调节的结构。它的某些蛋白质成分已被鉴定,其中包括跨膜蛋白质occludin。 TJ还被认为是胞质小叶上的非跨膜蛋白,包括ZO-1,ZO-2,扣环蛋白,7H6和一些未鉴定的磷蛋白。这些蛋白质中的一些与肌动蛋白细胞骨架的相互作用是TJ结构的主要决定因素,也可能在TJ装配的调节中发挥作用。 TJ形成的“钙转换”和“ ATP耗尽-补充”模型的最新进展提供了有关这些结构如何形成的新见解。 TJ生物发生似乎受到涉及异源三聚体G蛋白,细胞内Ca2 +释放和蛋白激酶C激活的经典信号转导通路的调节。尽管尚未确定信号通路的许多细节,但这些发现可能提供有关TJ在管状发育过程中如何形成的见解。此外,有可能提出潜在的治疗靶标,用于干预TJ完整性受损且需要重新组装的多种疾病(例如,局部缺血,对肾脏和其他上皮组织的毒性损伤)。

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