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紧密连接蛋白在生物系统组织中的通道功能。

Channel functions of claudins in the organization of biological systems.

机构信息

Institute of Clinical Physiology/Nutritional Medicine, Medical Department, Division of Gastroenterology, Infectiology, Rheumatology, Charité - Universitätsmedizin Berlin, 12203 Berlin, Germany.

Institute of Clinical Physiology/Nutritional Medicine, Medical Department, Division of Gastroenterology, Infectiology, Rheumatology, Charité - Universitätsmedizin Berlin, 12203 Berlin, Germany.

出版信息

Biochim Biophys Acta Biomembr. 2020 Sep 1;1862(9):183344. doi: 10.1016/j.bbamem.2020.183344. Epub 2020 May 20.

Abstract

Claudins are tight junction proteins mostly appreciated in their function of paracellular barrier-formation. Compared to a virtual absence of any tight junctions, their paracellular sealing role certainly stands out. Yet, it was recognized immediately after the discovery of the first claudins, that some members of the claudin protein family were able to convey size and charge selectivity to the paracellular pathway. Thus, paracellular permeability can be fine-tuned according to the physiological needs of a tissue by inserting these channel-forming claudins into tight junction strands. Precise permeability adjustment is further suggested by the presence of numerous isoforms of channel-forming claudins (claudin-10b-, -15-, -16-like isoforms) in various vertebrate taxa. Moreover, their expression and localization are controlled by multiple transcriptional and posttranslational mechanisms. Consequently, mutation or dysregulation of channel-forming claudins can cause severe diseases. The present review therefore aims at providing an up-to-date report of the current research on these aspects of channel-forming claudins and their possible implications on future developments.

摘要

紧密连接蛋白 Claudin 主要因其形成细胞旁屏障的功能而受到重视。与几乎不存在任何紧密连接相比,其细胞旁密封作用无疑更为突出。然而,在发现第一个 Claudin 蛋白家族成员后,人们立即认识到,Claudin 蛋白家族的某些成员能够赋予细胞旁途径大小和电荷选择性。因此,通过将这些形成通道的 Claudin 插入紧密连接链中,可以根据组织的生理需求精细调节细胞旁通透性。在各种脊椎动物分类群中存在大量通道形成 Claudin 的同工型(Claudin-10b、-15、-16 样同工型),进一步提示了精确的通透性调节。此外,其表达和定位受多种转录后和翻译后机制的控制。因此,通道形成 Claudin 的突变或失调可能导致严重疾病。因此,本综述旨在提供关于通道形成 Claudin 及其对未来发展可能产生的影响的这些方面的最新研究报告。

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