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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Heterodimerization and cross-desensitization between the mu-opioid receptor and the chemokine CCR5 receptor.
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Heterodimerization and cross-desensitization between the mu-opioid receptor and the chemokine CCR5 receptor.

机译:阿片类鸦片受体与趋化因子CCR5受体之间的异二聚作用和交叉脱敏作用。

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Cross-desensitization between micro-opioid receptor agonists and CC chemokines was shown to occur in immune cells and in the central nervous system. However, these cells do not permit examination of potential mechanisms at cellular levels due to low levels and mixed populations of receptors. In this study, we investigated possible interactions and biochemical mechanisms of cross-desensitization between the mu-opioid and chemokine CCR5 receptors coexpressed in Chinese hamster ovary (CHO) cells. Hemagglutinin (HA)-tagged micro-opioid receptor coimmunoprecipitated with FLAG (Asp-Tyr-Lys-Asp-Asp-Asp-Asp-Lys)-tagged chemokine receptor CCR5 in cells expressing the two receptors, but not in a mixture of cells transfected with one of the two receptors, indicating that the two receptors form heterodimers. Treatment with the mu-opioid receptor agonist DAMGO ([D-Ala(2), N-Me-Phe(4), Gly(5)-ol]-enkephalin), the chemokine RANTES (Regulated on Activation, Normal T cell-Expressed and -Secreted) (CCL5), or both, did not affect the level of coimmunoprecipitation. DAMGO and RANTES (CCL5) induced chemotaxis in CHO cells coexpressing both receptors, and preincubation with either DAMGO or RANTES (CCL5) profoundly inhibited chemotaxis caused by the other. DAMGO pretreatment enhanced phosphorylation of the chemokine CCR5 receptor and reduced RANTES (CCL5)-promoted [35S]GTP gamma S binding. Conversely, RANTES (CCL5) preincubation slightly increased phosphorylation of the mu-opioid receptor and significantly reduced DAMGO-induced [35S]GTP gamma S binding. These results indicate that activation of either receptor affected G protein coupling of the other, likely due to enhanced phosphorylation of the receptor. Heterodimerization between the two receptors may contribute to the observed cross-desensitization.
机译:微阿片受体激动剂和CC趋化因子之间的交叉脱敏作用显示在免疫细胞和中枢神经系统中。但是,由于受体水平低和混合种群,这些细胞不允许在细胞水平上检查潜在的机制。在这项研究中,我们调查了在中国仓鼠卵巢(CHO)细胞中共同表达的mu阿片类药物和趋化因子CCR5受体之间可能的相互作用和交叉脱敏的生化机制。在表达这两种受体的细胞中,用血凝素(HA)标记的微阿片受体与FLAG(Asp-Tyr-Lys-Asp-Asp-Asp-Asp-Lys)标记的趋化因子受体CCR5共免疫沉淀,但在转染的细胞混合物中不带有两个受体之一,表明这两个受体形成异二聚体。用μ阿片受体激动剂DAMGO([D-Ala(2),N-Me-Phe(4),Gly(5)-ol]-脑啡肽),趋化因子RANTES(受激活调节,正常T细胞-表达和-隐藏(CCL5)或两者均不影响共免疫沉淀的水平。 DAMGO和RANTES(CCL5)在共表达两种受体的CHO细胞中诱导趋化性,与DAMGO或RANTES(CCL5)一起预温育可显着抑制另一种受体引起的趋化性。 DAMGO预处理可增强趋化因子CCR5受体的磷酸化,并减少RANTES(CCL5)促进的[35S] GTPγS结合。相反,RANTES(CCL5)预温育可稍微增加mu阿片受体的磷酸化,并显着降低DAMGO诱导的[35S] GTPγS结合。这些结果表明,任一受体的激活影响了另一受体的G蛋白偶联,这可能是由于该受体的磷酸化增强所致。两种受体之间的异二聚作用可能有助于观察到的交叉脱敏。

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