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嵌合紧密连接蛋白:研究紧密连接结构与功能的新工具。

Chimeric Claudins: A New Tool to Study Tight Junction Structure and Function.

作者信息

Taylor Abigail, Warner Mark, Mendoza Christopher, Memmott Calvin, LeCheminant Tom, Bailey Sara, Christensen Colter, Keller Julie, Suli Arminda, Mizrachi Dario

机构信息

Department of Physiology and Developmental Biology, College of Life Sciences, Brigham Young University, Provo, UT 84602, USA.

出版信息

Int J Mol Sci. 2021 May 6;22(9):4947. doi: 10.3390/ijms22094947.

Abstract

The tight junction (TJ) is a structure composed of multiple proteins, both cytosolic and membranal, responsible for cell-cell adhesion in polarized endothelium and epithelium. The TJ is intimately connected to the cytoskeleton and plays a role in development and homeostasis. Among the TJ's membrane proteins, claudins (CLDNs) are key to establishing blood-tissue barriers that protect organismal physiology. Recently, several crystal structures have been reported for detergent extracted recombinant CLDNs. These structural advances lack direct evidence to support quaternary structure of CLDNs. In this article, we have employed protein-engineering principles to create detergent-independent chimeric CLDNs, a combination of a 4-helix bundle soluble monomeric protein (PDB ID: 2jua) and the apical-50% of human CLDN1, the extracellular domain that is responsible for cell-cell adhesion. Maltose-binding protein-fused chimeric CLDNs (MBP-CCs) used in this study are soluble proteins that retain structural and functional aspects of native CLDNs. Here, we report the biophysical characterization of the structure and function of MBP-CCs. MBP-fused epithelial cadherin (MBP-eCAD) is used as a control and point of comparison of a well-characterized cell-adhesion molecule. Our synthetic strategy may benefit other families of 4-α-helix membrane proteins, including tetraspanins, connexins, pannexins, innexins, and more.

摘要

紧密连接(TJ)是一种由多种蛋白质组成的结构,包括胞质蛋白和膜蛋白,负责极化内皮细胞和上皮细胞中的细胞间粘附。紧密连接与细胞骨架紧密相连,并在发育和体内平衡中发挥作用。在紧密连接的膜蛋白中,claudins(CLDNs)是建立保护机体生理的血组织屏障的关键。最近,已报道了几种去污剂提取的重组CLDNs的晶体结构。这些结构进展缺乏支持CLDNs四级结构的直接证据。在本文中,我们运用蛋白质工程原理创建了不依赖去污剂的嵌合CLDNs,它是一种4-螺旋束可溶性单体蛋白(PDB ID:2jua)与人类CLDN1顶端50%的组合,后者是负责细胞间粘附的细胞外结构域。本研究中使用的麦芽糖结合蛋白融合嵌合CLDNs(MBP-CCs)是可溶蛋白,保留了天然CLDNs的结构和功能特征。在此,我们报告了MBP-CCs结构和功能的生物物理特征。麦芽糖结合蛋白融合的上皮钙黏蛋白(MBP-eCAD)用作对照和已充分表征的细胞粘附分子的比较点。我们的合成策略可能对其他4-α-螺旋膜蛋白家族有益,包括四跨膜蛋白、连接蛋白、泛连接蛋白、间隙连接蛋白等。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c163/8124314/dcf36a7be955/ijms-22-04947-g001.jpg

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