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兔肺中速激肽受体的异质性。

Heterogeneity of tachykinin receptors in the rabbit lung.

作者信息

Millard S L, Bloom J W, Yamamura H I

机构信息

Department of Pediatrics, University of Arizona, Tucson, USA.

出版信息

Neurochem Res. 1996 Feb;21(2):277-83. doi: 10.1007/BF02529145.

Abstract

The tachykinins, substance P (SP) and neurokinin A (NKA), are agonists for the NK(1) and NK(2) receptors, respectively. Tachykinins have various respiratory effects, including bronchoconstriction. This study characterizes tachykinin binding sites in the rabbit lung. We hypothesize that (2-[(125)I]iodohistidyl(1))Neurokinin A ([(125)I]NKA) interacts with NK1 and NK2 binding sites in the rabbit lung. The K d determined from saturation isotherms was 0.69 times/divided by 1.14 nM (geometric mean times/divided by SEM) and the B max was 4.15 + or - 0.22 femtomole/mg protein (arithmetic mean + or - SEM). Competitive inhibition studies with NKA, SP and various selective tachykinin agonists showed the rank order of potency; [beta-Ala(8)]-Neurokinin A 4-10 = SP >> NKA >> [Sar(9),Met(02)11]-Substance P. [beta-Ala(8)]-Neurokinin A 4-10, a selective NK(2) agonist, and SP inhibition of [(125)I]NKA binding were best described using a two-site model. Competitive inhibition studies using the selective nonpeptide NK(2) antagonist (SR 48968) and the selective nonpeptide NK(1) antagonist (CP 96,345) revealed Ki's of 5.5 nM and 8.1 nM, respectively. Our data therefore suggest that [(125)I]NKA binds to both the NK(1) and NK(2) receptors in the lung.

摘要

速激肽、P物质(SP)和神经激肽A(NKA)分别是NK(1)和NK(2)受体的激动剂。速激肽具有多种呼吸效应,包括支气管收缩。本研究对兔肺中的速激肽结合位点进行进行进行兔肺中的速激肽结合位点进行了表征。我们假设(2-[(125)I]碘组氨酰(1))神经激肽A([(125)I]NKA)与兔肺中的NK1和NK2结合位点相互作用。根据饱和等温线确定的Kd为0.69倍/除以1.14 nM(几何平均值倍/除以标准误),Bmax为4.15±0.22飞摩尔/毫克蛋白(算术平均值±标准误)。用NKA、SP和各种选择性速激肽激动剂进行的竞争性抑制研究显示了效价顺序;[β-丙氨酸(8)]-神经激肽A 4-10 = SP >> NKA >> [Sar(9),Met(02)11]-P物质。[β-丙氨酸(8)]-神经激肽A 4-10,一种选择性NK(2)激动剂,以及SP对[(125)I]NKA结合的抑制作用,用双位点模型描述最佳。使用选择性非肽NK(2)拮抗剂(SR 48968)和选择性非肽NK(1)拮抗剂(CP 96,345)进行的竞争性抑制研究分别显示Ki值为5.5 nM和8.1 nM。因此,我们的数据表明[(125)I]NKA与肺中的NK(1)和NK(2)受体都结合。

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