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Phosphorylated adenosine derivatives as low-affinity adenosine-receptor agonists. Methodological implications for the adenylate cyclase assay

机译:磷酸化的腺苷衍生物作为低亲和力腺苷受体激动剂。腺苷酸环化酶测定的方法学意义

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pIn cellular systems provided with activatory (Ra-site) receptors for adenosine, such as rat cerebral microvessels and rat liver plasma membranes, the adenosine-receptor antagonist 8-phenyltheophylline (10 microM) significantly decreased adenylate cyclase activity if ATP was the substrate and only if GTP was present. With dATP as substrate, adenylate cyclase activities in both preparations remained unaffected by 8-phenyltheophylline. In rat cerebral-cortical membranes, with inhibitory (Ri-site) receptors for adenosine, 8-phenyltheophylline significantly enhanced adenylate cyclase activity only in the presence of GTP and if ATP was the substrate. In rat cardiac ventricular membranes, which are devoid of any adenylate cyclase-coupled adenosine receptor, the methylxanthine had no GTP-dependent effect, irrespective of the substrate used. All assay systems contained sufficiently high amounts of adenosine deaminase (2.5 units/ml), since no endogenous adenosine, formed from ATP, was found chromatographically. In order to demonstrate a direct influence of phosphorylated adenosine derivatives on adenylate cyclase activity, we investigated AMP in a dATP assay system. AMP was verified chromatographically to remain reasonably stable under the adenylate cyclase assay conditions. In the microvessels, AMP increased enzyme activity in the range 0.03-1.0 mM, an effect competitively antagonized by 8-phenyltheophylline. In the cortical membranes, 0.1 mM-AMP inhibited adenylate cyclase, which was partially reversed by the methylxanthine. The presence of GTP was again necessary for all observations. In the ventricular membranes, AMP had no effect. Since the efficacy of adenosine-receptor agonists and, probably, that of other hormones on adenylate cyclase activity can be more efficiently measured with dATP as the enzyme substrate, this nucleotide seems preferable for adenylate cyclase measurements in systems susceptible to modulation by adenosine./p
机译:在具有腺苷活化(Ra-site)受体的细胞系统中,例如大鼠脑微血管和大鼠肝质膜,如果ATP是腺苷受体拮抗剂8-苯基茶碱(10 microM),腺苷酸环化酶活性会明显降低。底物,并且仅当存在GTP时。以dATP为底物,两种制剂中的腺苷酸环化酶活性均不受8-苯基茶碱的影响。在大鼠大脑皮层膜中,只有腺苷具有抑制作用(Ri位)的腺苷受体,8-苯基茶碱才能显着增强腺苷酸环化酶的活性。在没有任何腺苷酸环化酶偶联的腺苷受体的大鼠心室膜中,无论使用何种底物,甲基黄嘌呤都没有GTP依赖性作用。由于没有在色谱上发现由ATP形成的内源性腺苷,因此所有测定系统均包含足够量的腺苷脱氨酶(2.5单位/ ml)。为了证明磷酸化腺苷衍生物对腺苷酸环化酶活性的直接影响,我们在dATP分析系统中研究了AMP。色谱分析证实AMP在腺苷酸环化酶测定条件下保持合理的稳定性。在微血管中,AMP在0.03-1.0 mM的范围内增加了酶活性,这是8-苯基茶碱竞争性拮抗的作用。在皮膜中,0.1 mM-AMP抑制了腺苷酸环化酶,该酶被甲基黄嘌呤部分逆转。对于所有观察而言,再次需要GTP的存在。在心室膜中,AMP没有作用。由于以dATP为酶底物可以更有效地测定腺苷受体激动剂以及其他激素对腺苷酸环化酶活性的功效,因此该核苷酸似乎更适用于在易受腺苷调节的系统中进行腺苷酸环化酶测定。

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