首页> 外文OA文献 >Ligand-specific conformational change of the G-protein-coupled receptor ALX/FPR2 determines proresolving functional responses.
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Ligand-specific conformational change of the G-protein-coupled receptor ALX/FPR2 determines proresolving functional responses.

机译:G蛋白偶联受体ALX / FPR2的配体特异性构象变化决定了可分辨的功能反应。

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摘要

Formyl-peptide receptor type 2 (FPR2), also called ALX (the lipoxin A4 receptor), conveys the proresolving properties of lipoxin A4 and annexin A1 (AnxA1) and the proinflammatory signals elicited by serum amyloid protein A and cathelicidins, among others. We tested here the hypothesis that ALX might exist as homo- or heterodimer with FPR1 or FPR3 (the two other family members) and operate in a ligand-biased fashion. Coimmunoprecipitation and bioluminescence resonance energy transfer assays with transfected HEK293 cells revealed constitutive dimerization of the receptors; significantly, AnxA1, but not serum amyloid protein A, could activate ALX homodimers. A p38/MAPK-activated protein kinase/heat shock protein 27 signaling signature was unveiled after AnxA1 application, leading to generation of IL-10, as measured in vitro (in primary monocytes) and in vivo (after i.p. injection in the mouse). The latter response was absent in mice lacking the ALX ortholog. Using a similar approach, ALX/FPR1 heterodimerization evoked using the panagonist peptide Ac2-26, identified a JNK-mediated proapoptotic path that was confirmed in primary neutrophils. These findings provide a molecular mechanism that accounts for the dual nature of ALX and indicate that agonist binding and dimerization state contribute to the conformational landscape of FPRs.
机译:2型甲酰肽受体(FPR2)也称为ALX(脂蛋白A4受体),可传达脂蛋白A4和膜联蛋白A1(AnxA1)的前溶解特性以及血清淀粉样蛋白A和cathelicidins引发的促炎信号。我们在这里测试了以下假设:ALX可能与FPR1或FPR3(另两个家族成员)以同二聚体或异二聚体存在,并以配体偏倚的方式运行。用转染的HEK293细胞进行的共免疫沉淀和生物发光共振能量转移测定显示了受体的组成性二聚化;值得注意的是,AnxA1可以激活ALX同二聚体,但不能激活血清淀粉样蛋白A。应用AnxA1后揭示了p38 / MAPK激活的蛋白激酶/热休克蛋白27信号签名,导致体外(在原代单核细胞中)和体内(在小鼠腹腔内注射后)测量到IL-10。在缺少ALX直向同源物的小鼠中不存在后者的反应。使用类似的方法,使用激动剂肽Ac2-26引起的ALX / FPR1异源二聚化,确定了在原发性中性粒细胞中证实的JNK介导的促凋亡途径。这些发现提供了解释ALX双重性质的分子机制,并表明激动剂结合和二聚化状态有助于FPR的构象格局。

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