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在大鼠心肌细胞中观察到的与相反的节后效应相关的神经肽Y受体Y1和Y2亚型的证据。

Evidence for Y1 and Y2 subtypes of neuropeptide Y receptors linked to opposing postjunctional effects observed in rat cardiac myocytes.

作者信息

McDermott B J, Millar B C, Dolan F M, Bell D, Balasubramaniam A

机构信息

Whitla Division of Medicine (Therapeutics and Pharmacology), The Queen's University of Belfast, Northern Ireland, UK.

出版信息

Eur J Pharmacol. 1997 Oct 8;336(2-3):257-65. doi: 10.1016/s0014-2999(97)01258-2.

Abstract

The aim of this study was to confirm the existence of and identify the receptor subtypes for neuropeptide Y that are present post-junctionally in myocardium. The effects of the selective agonists, [Leu31, Pro34] neuropeptide Y (neuropeptide Y Y1 receptors), neuropeptide Y-(13-36) and peptide YY-(3-36) (neuropeptide Y Y2 receptors), and neuropeptide Y and the related peptide YY, which have differential action at neuropeptide Y Y3 receptors, on amplitudes of contraction of adult rat ventricular cardiomyocytes were studied. Also, the effect of the neuropeptide Y Y1-selective antagonist, bis(31/31')[[Cys31, Trp32, Nva34] neuropeptide Y-(31-36)] on neuropeptide Y-mediated changes in myocyte contraction was investigated. Neuropeptide Y, peptide YY, neuropeptide Y-(13-36) and peptide YY-(3-36) attenuated the isoprenaline (10(-7) M)-stimulated contractile response, and the EC50 values were 9.0 x 10(-9), 4.3 x 10(-10), 3.1 x 10(-11) and 8.5 x 10(-11) M, respectively. [Leu31, Pro34] neuropeptide Y increased the contractile response of cardiomyocytes, and the EC50 values were 8.1 x 10(-9) and 1.5 x 10(-9) M, in the absence and presence of isoprenaline, respectively. Since [Leu31, Pro34] neuropeptide Y caused a positive effect on ventricular myocyte contraction and neuropeptide Y-(13-36) and peptide YY (3-36) produced the most potent negative effects, it is proposed that both neuropeptide Y Y1 and neuropeptide Y Y2 receptors, linked respectively to the positive and negative responses, are expressed in cardiomyocytes. The finding of receptors with neuropeptide Y Y2 characteristics on cardiomyocytes represents a further example of a postjunctional location for this subtype. As there was no significant discrepancy between the potencies of peptide YY and neuropeptide Y to attenuate the contractile response, it appears that neuropeptide Y Y3-like receptors are not linked principally to contractile function in rat cardiomyocytes. Bis(31/31')[[Cys31, Trp32, Nva34] neuropeptide Y-(31-36)] antagonised the neuropeptide Y-mediated stimulation of contractile activity through neuropeptide Y Y1 receptors, but the compound also inhibited the attenuation of isoprenaline-stimulated contraction, apparently by acting as a partial agonist at the neuropeptide Y Y2 receptors.

摘要

本研究的目的是确认心肌中存在神经肽Y的受体亚型并对其进行鉴定。研究了选择性激动剂[Leu31, Pro34]神经肽Y(神经肽Y Y1受体)、神经肽Y-(13 - 36)和肽YY-(3 - 36)(神经肽Y Y2受体)以及对神经肽Y Y3受体具有不同作用的神经肽Y和相关肽YY对成年大鼠心室心肌细胞收缩幅度的影响。此外,还研究了神经肽Y Y1选择性拮抗剂双(31/31')[[Cys31, Trp32, Nva34]神经肽Y-(31 - 36)]对神经肽Y介导的心肌细胞收缩变化的影响。神经肽Y、肽YY、神经肽Y-(13 - 36)和肽YY-(3 - 36)减弱了异丙肾上腺素(10(-7) M)刺激的收缩反应,其半数有效浓度(EC50)值分别为9.0×10(-9)、4.3×10(-10)、3.1×10(-11)和8.5×10(-11) M。[Leu31, Pro34]神经肽Y增强了心肌细胞的收缩反应,在不存在和存在异丙肾上腺素时,其EC50值分别为8.1×10(-9)和1.5×10(-9) M。由于[Leu31, Pro34]神经肽Y对心室肌细胞收缩产生正向作用,而神经肽Y-(13 - 36)和肽YY(3 - 36)产生最有效的负向作用,因此推测分别与正向和负向反应相关的神经肽Y Y1和神经肽Y Y2受体均在心肌细胞中表达。在心肌细胞上发现具有神经肽Y Y2特征的受体是该亚型在突触后定位的又一实例。由于肽YY和神经肽Y减弱收缩反应的效力之间无显著差异,似乎神经肽Y Y3样受体在大鼠心肌细胞中与收缩功能无主要关联。双(31/31')[[Cys31, Trp32, Nva34]神经肽Y-(31 - 36)]通过神经肽Y Y1受体拮抗神经肽Y介导的收缩活性刺激,但该化合物也抑制了异丙肾上腺素刺激的收缩减弱,显然是通过作为神经肽Y Y2受体的部分激动剂起作用。

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