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结合质谱和下拉技术研究受体异聚化。腺苷A2A受体与多巴胺D2受体之间的直接表位-表位静电相互作用。

Combining mass spectrometry and pull-down techniques for the study of receptor heteromerization. Direct epitope-epitope electrostatic interactions between adenosine A2A and dopamine D2 receptors.

作者信息

Ciruela Francisco, Burgueño Javier, Casadó Vicent, Canals Meritxell, Marcellino Daniel, Goldberg Steven R, Bader Michael, Fuxe Kjell, Agnati Luigi F, Lluis Carmen, Franco Rafael, Ferré Sergi, Woods Amina S

机构信息

Department of Biochemistry and Molecular Biology, University of Barcelona, Barcelona, E-08028, Spain.

出版信息

Anal Chem. 2004 Sep 15;76(18):5354-63. doi: 10.1021/ac049295f.

Abstract

Previous results from FRET and BRET experiments and computational analysis (docking simulations) have suggested that a portion of the third intracellular loop (I3) of the human dopamine D2 receptor (D2R) and the C-tail from the human adenosine A2A receptor (A2AR) are involved in A2AR-D2R heteromerization. The results of the present studies, using pull-down and mass spectrometry experiments, suggest that A2AR-D2R heteromerization depends on an electrostatic interaction between an Arg-rich epitope from the I3 of the D2R (217RRRRKR222) and two adjacent Asp residues (DD401-402) or a phosphorylated Ser (S374) residue in the C-tail of the A2AR. A GST-fusion protein containing the C-terminal domain of the A2AR (GST-A2ACT) was able to pull down the whole D2R solubilized from D2R-tranfected HEK-293 cells. Second, a peptide corresponding to the Arg-rich I3 region of the D2R (215VLRRRRKRVN224) and bound to Sepharose was able to pull down both GST-A2ACT and the whole A2AR solubilized from A2AR-tranfected HEK-293 cells. Finally, mass spectometry and pull-down data showed that the Arg-rich D2R epitope binds to two different epitopes from the C-terminal part of the A2AR, containing the two adjacent Asp residues or the phosphorylated Ser residue (388HELKGVCPEPPGLDDPLAQDGAVGS412 and 370SAQEpSQGNT378). The present results are the first example of epitope-epitope electrostatic interaction underlying receptor heteromerization, a new, expanding area of protein-protein interactions.

摘要

来自荧光共振能量转移(FRET)和生物发光共振能量转移(BRET)实验以及计算分析(对接模拟)的先前结果表明,人类多巴胺D2受体(D2R)的第三个细胞内环(I3)的一部分与人类腺苷A2A受体(A2AR)的C末端参与了A2AR-D2R异源二聚化。本研究使用下拉和质谱实验的结果表明,A2AR-D2R异源二聚化取决于D2R的I3中富含精氨酸的表位(217RRRRKR222)与A2AR的C末端中两个相邻的天冬氨酸残基(DD401-402)或一个磷酸化的丝氨酸(S374)残基之间的静电相互作用。含有A2AR C末端结构域的谷胱甘肽S-转移酶(GST)融合蛋白(GST-A2ACT)能够下拉从转染D2R的HEK-293细胞中溶解的完整D2R。其次,与琼脂糖结合的对应于D2R富含精氨酸的I3区域的肽(215VLRRRRKRVN224)能够下拉GST-A2ACT以及从转染A2AR的HEK-293细胞中溶解的完整A2AR。最后,质谱和下拉数据表明,富含精氨酸的D2R表位与A2AR C末端部分的两个不同表位结合,这两个表位包含两个相邻的天冬氨酸残基或磷酸化的丝氨酸残基(388HELKGVCPEPPGLDDPLAQDGAVGS412和370SAQEpSQGNT378)。本研究结果是受体异源二聚化背后表位-表位静电相互作用的首个实例,这是蛋白质-蛋白质相互作用中一个新的、不断扩展的领域。

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