首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Homodimerization of adenosine A2A receptors: qualitative and quantitative assessment by fluorescence and bioluminescence energy transfer.
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Homodimerization of adenosine A2A receptors: qualitative and quantitative assessment by fluorescence and bioluminescence energy transfer.

机译:腺苷A2A受体的同质化:通过荧光和生物发光能量转移进行定性和定量评估。

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摘要

The results presented in this paper show that adenosine A2A receptor (A2AR) form homodimers and that homodimers but not monomers are the functional species at the cell surface. Fluorescence resonance energy transfer (FRET) and bioluminescence resonance energy transfer (BRET) techniques have been used to demonstrate in transfected HEK293 cells homodimerization of A2AR, which are heptaspanning membrane receptors with enriched expression in striatum. The existence of homodimers at the cell surface was demonstrated by time-resolved FRET. Although agonist activation of the receptor leads to the formation of receptor clusters, it did not affect the degree of A2AR-A2AR dimerization. Both monomers and dimers were detected by immunoblotting in cell extracts. However, cell surface biotinylation of proteins has made evident that more than 90% of the cell surface receptor is in its dimeric form. Thus, it seems that homodimers are the functional form of the receptor present on the plasma membrane. A deletion mutantversion of the A2A receptor, lacking its C-terminal domain, was also able to form both monomeric and dimeric species when cell extracts from transfected cells were analyzed by immunoblotting. This suggests that the C-terminal tail does not participate in the dimerization. This is relevant as the C-terminal tail of A2AR is involved in heteromers formed by A2AR and dopamine D2 receptors. BRET ratios corresponding to A2AR-A2AR homodimers were higher than those encountered for heterodimers formed by A2AR and dopamine D2 receptors. As A2AR and dopamine D2 receptors do indeed interact, these results indicate that A2AR homodimers are the functional species at the cell surface and that they coexist with A2AR/D2 receptor heterodimers.
机译:本文提出的结果表明,腺苷A2A受体(A2AR)形成同型二聚体,而同型二聚体而非单体是细胞表面的功能物种。荧光共振能量转移(FRET)和生物发光共振能量转移(BRET)技术已用于在转染的HEK293细胞中证明A2AR的同型二聚化,这是在纹状体中表达丰富的庚烷膜受体。时间分辨的FRET证明了在细胞表面存在同型二聚体。尽管受体的激动剂活化导致受体簇的形成,但是它不影响A2AR-A2AR二聚化的程度。通过在细胞提取物中进行免疫印迹检测单体和二聚体。然而,蛋白质的细胞表面生物素化已表明超过90%的细胞表面受体为二聚体形式。因此,似乎同二聚体是质膜上存在的受体的功能形式。当通过免疫印迹分析转染细胞的细胞提取物时,缺少其C末端结构域的A2A受体的缺失突变突变也能够形成单体和二聚体物种。这表明C末端的尾巴不参与二聚化。这是相关的,因为A2AR的C末端尾端参与了由A2AR和多巴胺D2受体形成的异聚体。对应于A2AR-A2AR同型二聚体的BRET比率高于A2AR和多巴胺D2受体形成的异二聚体所遇到的比率。由于A2AR和多巴胺D2受体确实相互作用,因此这些结果表明A2AR同型二聚体是细胞表面的功能性物种,并且它们与A2AR / D2受体异二聚体共存。

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