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首页> 外文期刊>The FASEB Journal >MIF-chemokine receptor interactions in atherogenesis are dependent on an N-loop-based 2-site binding mechanism
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MIF-chemokine receptor interactions in atherogenesis are dependent on an N-loop-based 2-site binding mechanism

机译:MIF-趋化因子受体相互作用在血管发生中依赖于基于N环的2位粘合机制

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摘要

Macrophage migration inhibitory factor (MIF) is a cytokine that mediates inflammatory diseases. MIF promotes atherogenic leukocyte recruitment through a promiscuous, yet highly affine, interaction with CXCR2 and CXCR4. Binding to CXCR2 is dependent on a pseudo-(E)LR motif in MIF, but a second interaction site has been elusive. Here we identified an N-like loop in MIF, suggesting that MIF binding to CXCR2 follows the 2-site binding mode of bona fide chemokines. For MIF, the model predicts interactions between the N-like loop and the CXCR2 N domain (site 1) and pseudo-(E)LR and extracellular loops (ELs) of CXCR2 (site 2). Applying biophysical and peptide array analysis, we demonstrated an interaction between MIF and the CXCR2 N domain, which was pseudo-(E)LR independent. Peptide array analysis also indicated that the pseudo-(E)LR motif is responsible for MIF binding to EL2 and 3. Notably, peptides MIF-(40–49) and MIF-(47–56), representing N-like-loop-derived peptides, but not a scrambled control peptide, significantly blocked MIF/CXCR2 binding, MIF-mediated monocyte arrest under flow on aortic endothelial cells in vitro (IC50: 1.24×10?6 M), and MIF-dependent monocyte adhesion to atherosclerotic mouse carotid arteries in vivo. Thus, the N-like loop in MIF is critical for MIF's noncognate interaction with CXCR2 and proatherogenic functions. The 2-site binding model that explains chemokine receptor activation also applies to MIF.—Kraemer, S., Lue, H., Zernecke, A., Kapurniotu, A., Andreetto, E., Frank, R., Lennartz, B., Weber, C., Bernhagen, J. MIF-chemokine receptor interactions in atherogenesis are dependent on an N-loop-based 2-site binding mechanism.
机译:巨噬细胞迁移抑制因子(MIF)是介导炎症疾病的细胞因子。 MIF通过混杂的,高度染色的,与CXCR2和CXCR4相互作用促进肌动血白细胞募集。与CXCR2的结合取决于MIF中的伪(e)LR基序,但第二个相互作用位点已经难以捉摸。在这里,我们鉴定了MIF中的类似N样环,表明MIF与CXCR2的结合遵循BONA FIDE趋化因子的2位结合模式。对于MIF,该模型预测了N样环与CXCR2 N结构域(位点1)和CXCR2(位点2)的伪(ELS)之间的相互作用。应用生物物理和肽阵列分析,我们证明了MIF和CXCR2 N结构域之间的相互作用,其是独立的伪(E)LR。肽阵列分析还表明,假型 - (e)LR基序负责MIF与EL2和3的结合。值得注意的是,肽MIF-(40-49)和MIF-(47-56),代表n样环 - 衍生的肽,但不是加扰的对照肽,显着阻断的MIF / CXCR2结合,MIF介导的单核细胞停止在体外主动脉内皮细胞的流动下(IC50:1.24×10?6M),以及对动脉粥样硬化小鼠的MIF依赖性单核细胞粘附体内颈动脉。因此,MIF中的n样环对于MIF与CXCR2和电母函数的非认知交互至关重要。解释趋化因子受体激活的2位绑定模型也适用于MIF.-Kraemer,S.,Lue,H.,Zernecke,A.,Kapurniotu,A.,Andreetto,E.,Frank,R.,Lenartz,B 。,Weber,C.,Bernhagen,J.MIF-趋化因子受体相互作用在肌动粥中依赖于基于N环的2位结合机制。

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