首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Receptor-specific ligands distinguish natriuretic peptide receptors-A and -C in primate tissues
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Receptor-specific ligands distinguish natriuretic peptide receptors-A and -C in primate tissues

机译:受体特异性配体在灵长类动物组织中区分利钠肽受体-A和-C

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摘要

Systemic clearance of atrial natriuretic peptide (ANP) is in part due to neutral endopeptidase (NEP) proteolysis and natriuretic peptide receptor-C (NPR-C) mediated endocytosis. Biological responses to ANP are primarily mediated by the membrane guanylyl cyclase-Aatriuretic peptide receptor-A (NPR-A). Analogs of ANP selective for NPR-A and/or resistant to NEP may have increased activity in those tissues where NPR-C and NEP are coexpressed with NPR-A. The analog of ANP termed vANP; [R3D, G9T, R11S, M12L, G16R)ANP] is selective for human NPR-A with at least 10,000 fold reduction in affinity for human NPR-C. We report that rat NPR-A is insensitive to 10 nM vANP, demonstrating the limitations of this species in evaluating human therapeutic candidates. As an alternative approach we tested the binding and potency of receptor-selective and NEP-resistant ANP analogs in rhesus monkey tissues. Competition binding studies with a simplified version of vANP, sANP[(G9T, R11S, G16R)rANP], in rhesus monkey kidney and lung membrane preparations shows displacement of~(125)I-ANP from only a fraction of the total ANP receptor population, 30 and 85%, respectively. The remaining ANP binding sites can be occupied with the NPR-C selective ligand cNP(4-23). These data strongly suggest that only two classes of ANP receptor are present in these membrane preparations, NPR-A and NPR-C. The NEP resistant sANP derivative called sANP(TAPR) was 8 fold more potent (ED_(50) = 0.6 nM) than rANP (ED_(50) = SnM) in stimulating cGMP production in the lung membrane preparation. Our results demonstrate that the rhesus monkey natriuretic peptide receptors reflect the pharmacology of the human receptors, and that this species may be suitable to determine the role of NPR-C and NEP in peptide clearance and attenuating functional responses.
机译:心钠素的系统清除部分归因于中性内肽酶(NEP)的蛋白水解和利尿肽受体C(NPR-C)介导的胞吞作用。对ANP的生物反应主要由膜鸟苷酰环化酶A /利钠肽受体A(NPR-A)介导。在NPR-C和NEP与NPR-A共表达的那些组织中,对NPR-A具有选择性和/或对NEP耐药的ANP类似物可能具有增强的活性。 ANP的类似物称为vANP; [R3D,G9T,R11S,M12L,G16R)ANP对人NPR-A具有选择性,对人NPR-C的亲和力降低至少10,000倍。我们报告大鼠NPR-A对10 nM vANP不敏感,表明该物种在评估人类治疗候选药物方面的局限性。作为替代方法,我们测试了猕猴组织中受体选择性和NEP抵抗性ANP类似物的结合和效力。在恒河猴的肾脏和肺膜制剂中使用vANP,sANP [(G9T,R11S,G16R)rANP]的简化版本进行的竞争结合研究显示,〜(125)I-ANP仅占总ANP受体群体的一小部分,分别为30%和85%。其余的ANP结合位点可以被NPR-C选择性配体cNP(4-23)占据。这些数据强烈暗示在这些膜制品中仅存在两类ANP受体:NPR-A和NPR-C。 NEP抗性sANP衍生物sANP(TAPR)在刺激肺膜制备中的cGMP产生方面的功效(ED_(50)= 0.6 nM)比rANP(ED_(50)= SnM)高8倍。我们的结果表明,恒河猴利尿钠肽受体反映了人类受体的药理作用,并且该物种可能适合确定NPR-C和NEP在肽清除和减弱功能反应中的作用。

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