首页> 美国卫生研究院文献>International Journal of Molecular Sciences >A2AR Transmembrane 2 Peptide Administration Disrupts the A2AR-A2AR Homoreceptor but Not the A2AR-D2R Heteroreceptor Complex: Lack of Actions on Rodent Cocaine Self-Administration
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A2AR Transmembrane 2 Peptide Administration Disrupts the A2AR-A2AR Homoreceptor but Not the A2AR-D2R Heteroreceptor Complex: Lack of Actions on Rodent Cocaine Self-Administration

机译:A2AR跨膜2肽给药会破坏A2AR-A2AR感受态受体但不会破坏A2AR-D2R异源受体复合物:对啮齿类可卡因自我给药缺乏作用

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摘要

It was previously demonstrated that rat adenosine A2AR transmembrane V peptide administration into the nucleus accumbens enhances cocaine self-administration through disruption of the A2AR-dopamine (D2R) heteroreceptor complex of this region. Unlike human A2AR transmembrane 4 (TM4) and 5 (TM5), A2AR TM2 did not interfere with the formation of the A2AR-D2R heteroreceptor complex in cellular models using BRET assay. A2AR TM2 was proposed to be part of the of the receptor interface of the A2AR homomer instead and was therefore tested in the current article for effects on rat cocaine self-administration using rat A2AR synthetic TM2 peptide bilaterally injected into the nucleus accumbens. The injected A2AR TM2 peptide failed to significantly counteract the inhibitory action of the A2AR agonist CGS 21680 (0.1 mg/Kg) on cocaine self-administration. In line with these results, the microinjected A2AR TM2 peptide did not reduce the number of proximity ligation assay blobs identifying A2AR-D2R heteroreceptor complexes in the nucleus accumbens. In contrast, the A2AR TM2 peptide significantly reduced the number of A2AR-A2AR homoreceptor complexes in the nucleus accumbens. As to effects on the receptor–receptor interactions in the A2AR-D2R heteroreceptor complexes, the A2AR TM2 peptide did not alter the significant increase in the D2R Ki, high values produced by the A2AR agonist CGS 21680 ex vivo in the ventral striatum. The results indicate that the accumbal A2AR-A2AR homomeric complexes are not involved in mediating the A2AR agonist-induced inhibition of cocaine self-administration.
机译:先前已证明,将大鼠腺苷A2AR跨膜V肽给药至伏隔核可通过破坏该区域的A2AR-多巴胺(D2R)异受体复合物来增强可卡因的自我给药。与人A2AR跨膜4(TM4)和5(TM5)不同,在使用BRET分析的细胞模型中,A2AR TM2不会干扰A2AR-D2R异源受体复合物的形成。有人提议将A2AR TM2成为A2AR同聚物受体界面的一部分,因此,在本篇文章中,使用了双向注入伏伏核的大鼠A2AR合成TM2肽对A2AR对可卡因自我给药的作用进行了测试。注射的A2AR TM2肽不能显着抵消A2AR激动剂CGS 21680(0.1 mg / Kg)对可卡因自我给药的抑制作用。与这些结果一致,显微注射的A2AR TM2肽并未减少识别伏隔核中A2AR-D2R异源受体复合物的邻近连接分析斑点的数量。相反,A2AR TM2肽显着减少伏伏核中A2AR-A2AR同型受体复合物的数量。至于对A2AR-D2R异源受体复合物中受体-受体相互作用的影响,A2AR TM2肽不会改变D2R Ki的显着增加,而A2AR激动剂CGS 21680在腹侧纹状体内产生的高值。结果表明,累积的A2AR-A2AR同聚物复合物不参与介导A2AR激动剂诱导的可卡因自我给药的抑制。

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