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Disruption of A2AR-D2R Heteroreceptor Complexes After A2AR Transmembrane 5 Peptide Administration Enhances Cocaine Self-Administration in Rats

机译:A2AR跨膜5肽给药后破坏A2AR-D2R异源受体复合物可增强大鼠的可卡因自我给药。

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摘要

Antagonistic allosteric A2AR-D2R receptor-receptor interactions in heteroreceptor complexes counteract cocaine self-administration and cocaine seeking in rats as seen in biochemical and behavioral experiments. It was shown that the human A2AR transmembrane five (TM5) was part of the interface of the human A2AR-D2R receptor heteromer. In the current paper, the rat A2AR synthetic TM5 (synthTM5) peptide disrupts the A2AR-D2R heteroreceptor complex in HEK293 cells as shown by the bioluminescence resonance energy transfer method. Rat A2AR synthTM5 peptide, microinjected into the nucleus accumbens, produced a complete counteraction of the inhibitory effects of the A2AR agonist on cocaine self-administration. It was linked to a disappearance of the accumbal A2AR-D2R heteroreceptor complexes and the A2AR agonist induced inhibition of D2R recognition using proximity ligation assay and biochemical binding techniques. However, possible effects of the A2AR synthTM5 peptide on accumbal A2AR-D3R and A2AR-D4R heteroreceptor complexes remain to be excluded. Evidence is provided that accumbal A2AR-D2R-like heteroreceptor complexes with their antagonistic receptor-receptor interactions can be major targets for treatment of cocaine use disorder.Electronic supplementary materialThe online version of this article (10.1007/s12035-018-0887-1) contains supplementary material, which is available to authorized users.
机译:异源受体复合物中的拮抗变构A2AR-D2R受体-受体相互作用可抵消可卡因的自我给药和在大鼠中的可卡因寻找作用,如生化和行为实验所示。结果表明,人A2AR跨膜5(TM5)是人A2AR-D2R受体异源单体界面的一部分。在目前的论文中,大鼠A2AR合成TM5(synthTM5)肽破坏了HEK293细胞中的A2AR-D2R异源受体复合物,如生物发光共振能量转移法所示。显微注射到伏隔核中的大鼠A2AR synthTM5肽完全抵消了A2AR激动剂对可卡因自我给药的抑制作用。它与邻近A2AR-D2R异源受体复合物的消失和A2AR激动剂通过邻近结扎法和生化结合技术诱导的D2R识别抑制作用有关。然而,A2AR synthTM5肽对Accumbal A2AR-D3R和A2AR-D4R异源受体复合物的可能作用仍未排除。有证据表明,具有A2AR-D2R样的复杂A2AR-D2R异源受体复合物及其拮抗性的受体-受体相互作用可能是可卡因使用障碍治疗的主要靶标。电子补充材料本文的在线版本(10.1007 / s12035-018-0887-1)包含补充材料,授权用户可以使用。

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