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The orphan receptor GPR17 identified as a new dual uracil nucleotides/cysteinyl-leukotrienes receptor

机译:孤儿受体GPR17被鉴定为新的双尿嘧啶核苷酸/半胱氨酰-白三烯受体

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摘要

Nucleotides and cysteinyl-leukotrienes (CysLTs) are unrelated signaling molecules inducing multiple effects through separate G-protein-coupled receptors: the P2Y and the CysLT receptors. Here we show that GPR17, a Gi-coupled orphan receptor at intermediate phylogenetic position between P2Y and CysLT receptors, is specifically activated by both families of endogenous ligands, leading to both adenylyl cyclase inhibition and intracellular calcium increases. Agonist-response profile, as determined by [35S]GTPγS binding, was different from that of already known CysLT and P2Y receptors, with EC50 values in the nanomolar and micromolar range, for CysLTs and uracil nucleotides, respectively. Both rat and human receptors are highly expressed in the organs typically undergoing ischemic damage, that is, brain, heart and kidney. In vivo inhibition of GPR17 by either CysLT/P2Y receptor antagonists or antisense technology dramatically reduced ischemic damage in a rat focal ischemia model, suggesting GPR17 as the common molecular target mediating brain damage by nucleotides and CysLTs. In conclusion, the deorphanization of GPR17 revealed a dualistic receptor for two endogenous unrelated ligand families. These findings may lead to dualistic drugs of previously unexplored therapeutic potential.
机译:核苷酸和半胱氨酰白三烯(CysLTs)是无关的信号分子,它们通过单独的G蛋白偶联受体P2Y和CysLT受体诱导多种作用。在这里,我们显示GPR17是在P2Y和CysLT受体之间的系统发育中间位置的Gi偶联孤儿受体,被两个内源性配体家族特异性激活,导致腺苷酸环化酶抑制和细胞内钙增加。由[ 35 S]GTPγS结合确定的激动剂反应谱不同于已知的CysLT和P2Y受体,对于CysLTs和尿嘧啶核苷酸,EC50值在纳摩尔和微摩尔范围内,分别。大鼠和人类受体均在通常遭受缺血性损伤的器官即脑,心脏和肾脏中高表达。 CysLT / P2Y受体拮抗剂或反义技术对GPR17的体内抑制作用可显着降低大鼠局灶性缺血模型的缺血损伤,表明GPR17是介导核苷酸和CysLTs介导脑损伤的常见分子靶标。总之,GPR17的去孤儿化显示了两个内源性无关配体家族的二元受体。这些发现可能导致具有先前未开发治疗潜力的二元药物。

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