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首页> 外文期刊>Molecular pharmacology. >Binding characteristics of cetirizine and levocetirizine to human H(1) histamine receptors: contribution of Lys(191) and Thr(194).
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Binding characteristics of cetirizine and levocetirizine to human H(1) histamine receptors: contribution of Lys(191) and Thr(194).

机译:西替利嗪和左西替利嗪与人H(1)组胺受体的结合特征:Lys(191)和Thr(194)的贡献。

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摘要

Competition experiments with [(3)H]mepyramine showed that cetirizine and its enantiomers, levocetirizine and (S)-cetirizine, bound with high affinity and stereoselectivity to human H(1) histamine receptors (K(i) values of 6, 3, and 100 nM, respectively). Cetirizine and levocetirizine were 600-fold more selective for H(1) receptors compared with a panel of receptors and channels. Binding results indicated that the interaction between cetirizine, its enantiomers, and histamine is compatible with a competitive behavior, in contrast with the noncompetitive profile of cetirizine and levocetirizine observed in isolated organs. Binding kinetics provided a suitable explanation for this observation, because levocetirizine dissociated from H(1) receptors with a half-time of 142 min; that of (S)-cetirizine was only 6 min, implying that the former could act as a pseudo-irreversible antagonist in functional studies. The carboxylic function of levocetirizine seemed responsible for its long dissociation time. Indeed, hydroxyl or methyl ester analogs dissociated more rapidly from H(1) receptors, with half-times of 31 min and 7 min, respectively. The importance of the carboxylic function of levocetirizine for the interaction with the H(1) receptor was further supported by the results from the mutation of Lys(191) to Ala(191). This mutation decreased the dissociation half-time of levocetirizine from 142 to 13 min and reduced its affinity from 3 to 12 nM, whereas the affinity and dissociation kinetics of hydroxyl and methyl ester analogs were hardly affected. The mutation of Thr(194) reduced the binding stereoselectivity by selectively enhancing the affinity of the distomer.
机译:与[(3)H] mepyramine的竞争实验表明,西替利嗪及其对映异构体左西替利嗪和(S)-西替利嗪对人H(1)组胺受体的亲和力和立体选择性(K(i)值为6,3,和100 nM)。西替利嗪和左西替利嗪对H(1)受体的选择性是一组受体和通道的600倍。结合结果表明,西替利嗪,其对映异构体和组胺之间的相互作用与竞争行为相容,这与在单独器官中观察到的西替利嗪和左西替利嗪的非竞争性特征相反。结合动力学为该观察提供了合适的解释,因为左西替利嗪从H(1)受体解离的时间为142分钟; (S)-西替利嗪的作用时间仅为6分钟,这表明前者可以在功能研究中充当拟不可逆的拮抗剂。左西替利嗪的羧基功能似乎是其离解时间长的原因。确实,羟基或甲基酯类似物从H(1)受体解离得更快,半衰期分别为31分钟和7分钟。 Lys(191)突变为Ala(191)的结果进一步支持了左西替利嗪羧酸功能与H(1)受体相互作用的重要性。该突变将左西替利嗪的解离半衰期从142减少到13分钟,并将其亲和力从3 nM降低到12 nM,而羟基和甲酯类似物的亲和力和解离动力学几乎不受影响。 Thr(194)的突变通过选择性地增强离聚物的亲和力而降低了结合立体选择性。

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