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正向选择时刻可识别人类嗅觉受体中的潜在功能残基。

Positive selection moments identify potential functional residues in human olfactory receptors.

作者信息

Singer M S, Weisinger-Lewin Y, Lancet D, Shepherd G M

机构信息

Section of Neurobiology, Yale University School of Medicine, New Haven, CT 06510, USA.

出版信息

Recept Channels. 1996;4(3):141-7.

PMID:9014237
Abstract

Correlated mutation analysis and molecular models of olfactory receptors have provided evidence that residues in the transmembrane domains form a binding pocket for odor ligands. As an independent test of these results, we have calculated positive selection moments for the alpha-helical sixth transmembrane domain (TM6) of human olfactory receptors. The moments can be used to identify residues that have been preferentially affected by positive selection and are thus likely to interact with odor ligands. The results suggest that residue 622, which is commonly a serine or threonine, could form critical H-bonds. In some receptors a dual-serine subsite, formed by residues 622 and 625, could bind hydroxyl determinants on odor ligands. The potential importance of these residues is further supported by site-directed mutagenesis in the beta-adrenergic receptor. The findings should be of practical value for future physiological studies, binding assays, and site-directed mutagenesis.

摘要

嗅觉受体的相关突变分析和分子模型已提供证据表明,跨膜结构域中的残基形成了气味配体的结合口袋。作为对这些结果的独立验证,我们计算了人类嗅觉受体α-螺旋第六跨膜结构域(TM6)的正选择矩。这些矩可用于识别那些优先受到正选择影响且因此可能与气味配体相互作用的残基。结果表明,通常为丝氨酸或苏氨酸的622位残基可能形成关键的氢键。在一些受体中,由622位和625位残基形成的双丝氨酸亚位点可能结合气味配体上的羟基决定簇。β-肾上腺素能受体中的定点诱变进一步支持了这些残基的潜在重要性。这些发现对于未来的生理学研究、结合测定和定点诱变应具有实际价值。

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