Singer M S
Section of Neurobiology and Center for Medical Informatics, Yale University School of Medicine, New Haven, CT 06520, USA.
Chem Senses. 2000 Apr;25(2):155-65. doi: 10.1093/chemse/25.2.155.
Expression studies have shown that the rat I7 olfactory receptor (OR-I7) responds preferentially to the aldehyde n-octanal. We wished to predict which residues in OR-I7 bind octanal and how the biophysical properties of these residues determine the receptor's odor selectivity. Building on our previous work on aldehyde interactions in olfactory receptors, we constructed a molecular model of OR-I7 based on the 7.5 A resolution three-dimensional map of rhodopsin. Octanal was automatically docked in the model. The results predicted an odor-binding pocket approximately 10 A from the extracellular surface, in a location similar to the epinephrine-binding pocket of the beta-adrenergic receptor and the odor-binding pocket of a previous olfactory receptor model. A lysine on TM4 and an aspartate on TM5 interacted with the aldehyde moiety of octanal. Hydrophobic residues formed Van der Waals contacts with the hydrocarbon portion of octanal. We docked related odor compounds and found that the predicted affinities compared favorably with experimental results. We also tested a number of amino acid substitutions in order to predict their effects on octanal affinity and provide leads for future experimental work.
表达研究表明,大鼠I7嗅觉受体(OR-I7)对正辛醛具有优先响应。我们希望预测OR-I7中哪些残基与正辛醛结合,以及这些残基的生物物理特性如何决定受体的气味选择性。基于我们之前关于嗅觉受体中醛相互作用的研究工作,我们根据视紫红质7.5埃分辨率的三维图谱构建了OR-I7的分子模型。正辛醛在该模型中自动对接。结果预测出一个距细胞外表面约10埃的气味结合口袋,其位置类似于β-肾上腺素能受体的肾上腺素结合口袋以及先前嗅觉受体模型的气味结合口袋。跨膜螺旋4(TM4)上的一个赖氨酸和跨膜螺旋5(TM5)上的一个天冬氨酸与正辛醛的醛基部分相互作用。疏水残基与正辛醛的烃基部分形成范德华接触。我们对接了相关的气味化合物,发现预测的亲和力与实验结果相当。我们还测试了一些氨基酸取代,以预测它们对正辛醛亲和力的影响,并为未来的实验工作提供线索。