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细菌切割免疫球蛋白的识别的分子机制由免疫调节受体 LILRA2 介导。

Molecular mechanism of the recognition of bacterially cleaved immunoglobulin by the immune regulatory receptor LILRA2.

机构信息

Laboratory of Biomolecular Science, Faculty of Pharmaceutical Sciences, Hokkaido University, Sapporo, Japan.

Laboratory of Biomolecular Science, Faculty of Pharmaceutical Sciences, Hokkaido University, Sapporo, Japan

出版信息

J Biol Chem. 2020 Jul 10;295(28):9531-9541. doi: 10.1074/jbc.RA120.013354. Epub 2020 May 18.

Abstract

Human leukocyte immunoglobulin-like receptors (LILRs) typically regulate immune activation by binding to the human leukocyte antigen class I molecules. LILRA2, a member of the LILR family, was recently reported to bind to other unique ligands, the bacterially degraded Igs (N-truncated Igs), for the activation of immune cells. Therefore, LILRA2 is currently attracting significant attention as a novel innate immune receptor. However, the detailed recognition mechanisms required for this interaction remain unclear. In this study, using several biophysical techniques, we uncovered the molecular mechanism of N-truncated Ig recognition by LILRA2. Surface plasmon resonance analysis disclosed that LILRA2 specifically binds to N-truncated Ig with weak affinity ( = 4.8 μm) and fast kinetics. However, immobilized LILRA2 exhibited a significantly enhanced interaction with N-truncated Ig due to avidity effects. This suggests that cell surface-bound LILRA2 rapidly monitors and identifies bi- or multivalent abnormal N-truncated Igs through specific cross-linking to induce immune activation. Van't Hoff analysis revealed that this interaction is enthalpy-driven, with a small entropy loss, and results from differential scanning calorimetry indicated the instability of the putative LILRA2-binding site, the Fab region of the N-truncated Ig. Atomic force microscopy revealed that N truncation does not cause significant structural changes in Ig. Furthermore, mutagenesis analysis identified the hydrophobic region of LILRA2 domain 2 as the N-truncated Ig-binding site, representing a novel ligand-binding site for the LILR family. These results provide detailed insights into the molecular regulation of LILR-mediated immune responses targeting ligands that have been modified by bacteria.

摘要

人类白细胞免疫球蛋白样受体(LILR)通常通过与人类白细胞抗原 I 类分子结合来调节免疫激活。LILRA2 是 LILR 家族的成员,最近有报道称其与其他独特的配体(细菌降解的 Ig,N 端截断的 Ig)结合,从而激活免疫细胞。因此,LILRA2 目前作为一种新型先天免疫受体受到了极大的关注。然而,这种相互作用所需的详细识别机制尚不清楚。在这项研究中,我们使用几种生物物理技术揭示了 LILRA2 识别 N 端截断 Ig 的分子机制。表面等离子体共振分析显示,LILRA2 特异性地以弱亲和力(=4.8 μm)和快速动力学与 N 端截断 Ig 结合。然而,由于亲合力效应,固定化的 LILRA2 与 N 端截断 Ig 的相互作用显著增强。这表明细胞表面结合的 LILRA2 通过特异性交联快速监测和识别二价或多价异常 N 端截断 Ig,从而诱导免疫激活。范特霍夫分析表明,这种相互作用是由焓驱动的,熵损失较小,差示扫描量热法的结果表明,假定的 LILRA2 结合位点,即 N 端截断 Ig 的 Fab 区域不稳定。原子力显微镜显示,Ig 的 N 端截断不会导致结构发生显著变化。此外,突变分析确定了 LILRA2 结构域 2 的疏水区为 N 端截断 Ig 的结合位点,代表了 LILR 家族的一个新的配体结合位点。这些结果提供了详细的见解,了解了针对细菌修饰配体的 LILR 介导的免疫反应的分子调节。

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