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人细胞连接黏附蛋白胞外域的分子特征

Molecular Characterization of the Extracellular Domain of Human Junctional Adhesion Proteins.

机构信息

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

Department of Molecular Microbiology, College of Life Sciences, Brigham Young University, Provo, UT 84602, USA.

出版信息

Int J Mol Sci. 2021 Mar 27;22(7):3482. doi: 10.3390/ijms22073482.

Abstract

The junction adhesion molecule (JAM) family of proteins play central roles in the tight junction (TJ) structure and function. In contrast to claudins (CLDN) and occludin (OCLN), the other membrane proteins of the TJ, whose structure is that of a 4α-helix bundle, JAMs are members of the immunoglobulin superfamily. The JAM family is composed of four members: A, B, C and 4. The crystal structure of the extracellular domain of JAM-A continues to be used as a template to model the secondary and tertiary structure of the other members of the family. In this article, we have expressed the extracellular domains of JAMs fused with maltose-binding protein (MBP). This strategy enabled the work presented here, since JAM-B, JAM-C and JAM4 are more difficult targets due to their more hydrophobic nature. Our results indicate that each member of the JAM family has a unique tertiary structure in spite of having similar secondary structures. Surface plasmon resonance (SPR) revealed that heterotypic interactions among JAM family members can be greatly favored compared to homotypic interactions. We employ the well characterized epithelial cadherin (E-CAD) as a means to evaluate the adhesive properties of JAMs. We present strong evidence that suggests that homotypic or heterotypic interactions among JAMs are stronger than that of E-CADs.

摘要

连接黏附分子(JAM)家族的蛋白在紧密连接(TJ)的结构和功能中起着核心作用。与紧密连接的其他膜蛋白紧密连接蛋白(CLDN)和闭合蛋白(OCLN)不同,其结构为 4α-螺旋束,JAMs 是免疫球蛋白超家族的成员。JAM 家族由四个成员组成:A、B、C 和 4。JAM-A 的细胞外结构域的晶体结构继续被用作模型来模拟家族其他成员的二级和三级结构。在本文中,我们表达了与麦芽糖结合蛋白(MBP)融合的 JAMs 的细胞外结构域。由于 JAM-B、JAM-C 和 JAM4 由于其疏水性更强,因此这项策略使我们能够完成目前的工作。我们的结果表明,尽管具有相似的二级结构,但 JAM 家族的每个成员都具有独特的三级结构。表面等离子体共振(SPR)表明,与同型相互作用相比,异型相互作用可以极大地有利于 JAM 家族成员之间的相互作用。我们采用了特征良好的上皮钙黏蛋白(E-CAD)来评估 JAMs 的黏附特性。我们提供了强有力的证据表明,JAMs 之间的同型或异型相互作用比 E-CADs 更强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44ae/8037251/b5c61e999820/ijms-22-03482-g001.jpg

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