首页> 外文期刊>Purinergic signalling >Functional coupling between adenosine A1 receptors and G-proteins in rat and postmortem human brain membranes determined with conventional guanosine-5′-O-(3-[35S]thio)triphosphate ([35S]GTPγS) binding or [35S]GTPγS/immunoprecipitation assay
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Functional coupling between adenosine A1 receptors and G-proteins in rat and postmortem human brain membranes determined with conventional guanosine-5′-O-(3-[35S]thio)triphosphate ([35S]GTPγS) binding or [35S]GTPγS/immunoprecipitation assay

机译:常规鸟苷-5'-O-(3- [35S]硫代)三磷酸([35S]GTPγS)结合或[35S]GTPγS/免疫沉淀法测定大鼠和死后人脑膜腺苷A1受体与G蛋白之间的功能偶联化验

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Adenosine signaling plays a complex role in multiple physiological processes in the brain, and its dysfunction has been implicated in pathophysiology of neuropsychiatric diseases such as schizophrenia and affective disorders. In the present study, the coupling between adenosine A1 receptor and G-protein was assessed by means of two [35S]GTP?3S binding assays, i.e., conventional filtration method and [35S]GTP?3S binding/immunoprecipitation in rat and human brain membranes. The latter method provides information about adenosine A1 receptor-mediated G?±i-3 activation in rat as well as human brain membranes. On the other hand, adenosine-stimulated [35S]GTP?3S binding determined with conventional assay derives from functional activation of G?±i/o proteins (not restricted only to G?±i-3) coupled to adenosine A1 receptors. The determination of adenosine concentrations in the samples used in the present study indicates the possibility that the assay mixture under our experimental conditions contains residual endogenous adenosine at nanomolar concentrations, which was also suggested by the results on the effects of adenosine receptor antagonists on basal [35S]GTP?3S binding level. The effects of adenosine deaminase (ADA) on basal binding also support the presence of adenosine. Nevertheless, the varied patterns of ADA discouraged us from adding ADA into assay medium routinely. The concentration-dependent increases elicited by adenosine were determined in 40 subjects without any neuropsychiatric disorders. The increases in %Emax values determined by conventional assay according to aging and postmortem delay should be taken into account in future studies focusing on the effects of psychiatric disorders on adenosine A1 receptor/G-protein interaction in postmortem human brain tissue.
机译:腺苷信号传导在大脑的多个生理过程中起着复杂的作用,其功能障碍与精神分裂症和情感障碍等神经精神疾病的病理生理学有关。在本研究中,通过两种[35S] GTP?3S结合测定法,即常规过滤方法和[35S] GTP?3S结合/免疫沉淀法在大鼠和人脑中评估了腺苷A1受体与G蛋白之间的偶联。膜。后一种方法提供了有关腺苷A1受体介导的大鼠以及人脑膜中Gα±i-3活化的信息。另一方面,用常规测定法测定的腺苷刺激的[35S]GTPβ3S结合源于与腺苷A1受体偶联的Gα±i / o蛋白的功能活化(不仅限于Gα±i-3)。本研究中所用样品中腺苷浓度的测定表明,在我们的实验条件下,测定混合物中含有纳摩尔浓度的残留内源性腺苷的可能性,这也由腺苷受体拮抗剂对基础[35S]作用的结果所暗示。 ] GTP?3S结合水平。腺苷脱氨酶(ADA)对基础结合的影响也支持腺苷的存在。然而,ADA的不同模式阻碍了我们常规地将ADA添加到测定培养基中。在40名无任何神经精神疾病的受试者中确定了腺苷引起的浓度依赖性增加。在以后的研究中,应着眼于根据精神疾病对死后人脑组织中腺苷A1受体/ G蛋白相互作用的影响,应考虑通过传统测定方法根据衰老和死后延迟确定的%Emax值增加。

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