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分子动力学模拟揭示了水作为决定β阻断剂奈必洛尔与β2-肾上腺素能受体结合亲和力的因素的基本作用。

Molecular dynamics simulations reveal fundamental role of water as factor determining affinity of binding of beta-blocker nebivolol to beta(2)-adrenergic receptor.

机构信息

Department of Physics, Tampere University of Technology, Tampere, Finland.

出版信息

J Phys Chem B. 2010 Jul 1;114(25):8374-86. doi: 10.1021/jp909971f.

DOI:10.1021/jp909971f
PMID:20524635
Abstract

The beta-adrenergic antagonists (beta-blockers) constitute a class of drugs that have well-established roles in treatments of various cardiovascular diseases. Despite a 50 year history, there are two clinically important subtypes of beta-adrenergic receptors (betaARs) called beta(1)AR and beta(2)AR that still are promising drug targets. Our study maps the interactions between nebivolol-one of the most efficient beta-blocking agents-and the beta(2)-adrenergic receptor by simulating two optical isomers of nebivolol: ssss-nebivolol and srrr-nebivolol. The srrr-configuration binds preferentially to beta(1)AR and beta(2)AR. The ssss-form has much lower binding affinity to both of them. Our work indicates that water is a very important component of the binding site of the beta(2)AR receptor. We found that the higher stereoselectivity of the srrr-configuration is due to interactions with water molecules, which extensively hydrate the binding site of beta(2)AR. By lowering the energy of binding, water enhanced the affinity of the srrr-form to beta(2)AR. We also address the problem of beta(1)AR/beta(2)AR selectivity. At higher concentrations, all beta-blocking agents lose their specificity and bind nonselectively, causing many adverse effects. Our simulations indicate that PHE194, TYR308, and ILE309 of the beta(2)AR and the corresponding residues of the beta(1)AR receptor may be important determinants of beta(1)AR versus beta(2)AR selectivity.

摘要

β-肾上腺素能拮抗剂(β-阻滞剂)构成了一类在各种心血管疾病治疗中具有明确作用的药物。尽管已有 50 年的历史,但仍有两种临床上重要的β-肾上腺素能受体(βAR)亚型,即β1AR 和β2AR,它们仍然是有前途的药物靶点。我们的研究通过模拟 nebivolol 的两种光学异构体:ssss-nebivolol 和 srrr-nebivolol,描绘了 nebivolol 与β2-肾上腺素能受体之间的相互作用。srrr-构型优先与β1AR 和β2AR 结合。ssss 形式对两者的结合亲和力要低得多。我们的工作表明,水是β2-肾上腺素能受体结合位点的一个非常重要的组成部分。我们发现 srrr-构型的更高立体选择性是由于与水分子的相互作用,这些水分子广泛水合了β2-肾上腺素能受体的结合位点。通过降低结合能,水增强了 srrr 形式与β2-AR 的亲和力。我们还解决了β1AR/β2AR 选择性的问题。在较高浓度下,所有β-阻滞剂都会失去特异性并非选择性地结合,导致许多不良反应。我们的模拟表明,β2-AR 的 PHE194、TYR308 和 ILE309 以及β1AR 受体的相应残基可能是β1AR 与β2AR 选择性的重要决定因素。

相似文献

1
Molecular dynamics simulations reveal fundamental role of water as factor determining affinity of binding of beta-blocker nebivolol to beta(2)-adrenergic receptor.分子动力学模拟揭示了水作为决定β阻断剂奈必洛尔与β2-肾上腺素能受体结合亲和力的因素的基本作用。
J Phys Chem B. 2010 Jul 1;114(25):8374-86. doi: 10.1021/jp909971f.
2
Stereochemical comparison of nebivolol with other beta-blockers.奈必洛尔与其他β受体阻滞剂的立体化学比较。
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The receptor binding profile of the new antihypertensive agent nebivolol and its stereoisomers compared with various beta-adrenergic blockers.新型抗高血压药物奈必洛尔及其立体异构体与多种β-肾上腺素能阻滞剂相比的受体结合情况。
Mol Pharmacol. 1988 Dec;34(6):843-51.
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Nebivolol: pharmacologic profile of an ultraselective, vasodilatory beta1-blocker.奈必洛尔:一种超选择性、血管舒张性β1受体阻滞剂的药理学特性
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Nebivolol: the somewhat-different beta-adrenergic receptor blocker.奈必洛尔:有所不同的β-肾上腺素能受体阻滞剂。
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The role of the new beta-blockers in treating cardiovascular disease.新型β受体阻滞剂在治疗心血管疾病中的作用。
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Human beta 1- and beta 2-adrenergic receptor binding and mediated accumulation of cAMP in transfected Chinese hamster ovary cells. Profile of nebivolol and known beta-adrenergic blockers.人β1和β2肾上腺素能受体结合及介导的环磷酸腺苷(cAMP)在转染的中国仓鼠卵巢细胞中的积累。奈必洛尔和已知β肾上腺素能阻滞剂的概况。
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Different pharmacological properties of two enantiomers in a unique beta-blocker, nebivolol.独特的β受体阻滞剂奈必洛尔中两种对映体的不同药理特性。
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Nebivolol: a third-generation beta-adrenergic blocker.奈必洛尔:一种第三代β-肾上腺素能阻滞剂。
Ann Pharmacother. 2006 Jul-Aug;40(7-8):1353-60. doi: 10.1345/aph.1G708. Epub 2006 Jul 5.
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Nitric oxide mechanisms of nebivolol.奈必洛尔的一氧化氮机制。
Ther Adv Cardiovasc Dis. 2009 Aug;3(4):317-27. doi: 10.1177/1753944709104496. Epub 2009 May 14.

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