The chemokine CXC4 and CC2 receptors form homo- and heterooligomers that can engage their signaling G-protein effectors and βarrestin

被引:44
作者
Armando, Sylvain [1 ,2 ,4 ,5 ]
Quoyer, Julie [1 ,2 ]
Lukashova, Viktorya [1 ,2 ]
Maiga, Arhamatoulaye [1 ,2 ]
Percherancier, Yann [1 ,2 ]
Heveker, Nikolaus [1 ,3 ]
Pin, Jean-Philippe [4 ,5 ]
Prezeau, Laurent [4 ,5 ]
Bouvier, Michel [1 ,2 ]
机构
[1] Univ Montreal, Dept Biochem, Montreal, PQ H3C 3J7, Canada
[2] Univ Montreal, Inst Res Immunol & Canc, Montreal, PQ H3C 3J7, Canada
[3] Univ Montreal, Hop Sainte Justine, Res Ctr, Montreal, PQ H3C 3J7, Canada
[4] Univ Montpellier I, INSERM U661, CNRS UMR 5203, Inst Genom Fonctionnelle, Montpellier, France
[5] Univ Montpellier 2, Montpellier, France
关键词
GPCR; complex formation; allosteric regulation; transactivation; resonance energy transfer; protein complementation assays; TIME-RESOLVED FRET; RESONANCE ENERGY-TRANSFER; HIGHER-ORDER OLIGOMERS; SNAP-TAG TECHNOLOGIES; CONFORMATIONAL-CHANGES; REVEALS; GPCR; DIMERIZATION; ACTIVATION; COMPLEXES;
D O I
10.1096/fj.13-242446
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
070307 [化学生物学]; 071010 [生物化学与分子生物学];
摘要
G-protein-coupled receptors have been shown to assemble at least as dimers early in the biosynthetic path, but some evidence suggests that they can also form larger oligomeric complexes. Using the human chemokine receptors CXCR4 and CCR2 as models, we directly probed the existence of higher order homo- and heterooligomers in human embryonic kidney cells. Combining bimolecular fluorescence and luminescence complementation (BiFC, BiLC) with bioluminescence resonance energy transfer (BRET) assays, we show that CXCR4 and CCR2 can assemble as homo-and heterooligomers, forming at least tetramers. Selective activation of CCR2 with the human monocyte chemotactic protein 1 (MCP-1) resulted in trans-conformational rearrangement of the CXCR4 dimer with an EC50 of 19.9 nM, compatible with a CCR2 action. Moreover, MCP-1 promoted the engagement of G alpha(i1), G alpha(13), G alpha(z), and beta arrestin2 to the heterooligomer, resulting in calcium signaling that was synergistically potentiated on coactivation of CCR2 and CXCR4, demonstrating that complexes larger than dimers reach the cell surface as functional units. A mutation of CXCR4 (N119K), which prevents G(i) activation, also affects the CCR2-promoted engagement of Gx alpha(i1) and beta arrestin2 by the heterooligomer, supporting the occurrence of transprotomer regulation. Together, the results demonstrate that homo-and heteromultimeric CXCR4 and CCR2 can form functional signaling complexes that have unique properties.
引用
收藏
页码:4509 / 4523
页数:15
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