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An olfactory receptor pseudogene whose function emerged in humans: a case study in the evolution of structure–function in GPCRs

机译:嗅觉受体假基因其功能已在人类中显现:以GPCR的结构功能演变为例

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摘要

Human olfactory receptor, hOR17-210, is identified as a pseudogene in the human genome. Experimental data has shown however, that the gene product of frame-shifted, cloned hOR17-210 cDNA was able to bind an odorant-binding protein and is narrowly tuned for excitation by cyclic ketones. Supported by experimental results, we used the bioinformatics methods of sequence analysis (genome-wide and pair-wise), computational protein modeling and docking, to show that functionality in this receptor is retained due to sequence-structure features not previously observed in mammalian ORs. This receptor does not possess the first two transmembrane helical domains (of seven typically seen in GPCRs). It however, possesses an additional TM that has not been observed in other human olfactory receptors. By incorporating these novel structural features, we created two putative models for this receptor. We also docked odor ligands that were experimentally showntobind hOR17-210. We show how and why structural modifications of OR17-210 do not hinder this receptor's functionality. Our studies reveal that novel gene rearrangements that result in sequence and structural diversity may have a bearing on OR and GPCR function and evolution.
机译:人类嗅觉受体hOR17-210被鉴定为人类基因组中的假基因。然而,实验数据表明,移码的克隆的hOR17-210 cDNA的基因产物能够结合气味结合蛋白,并且可以通过环酮的激发进行窄调。在实验结果的支持下,我们使用了生物信息学方法进行了序列分析(全基因组和成对分析),计算蛋白质建模和对接,以表明该受体的功能得以保留,这是由于哺乳动物ORs以前未观察到的序列结构特征所致。 。该受体不具有前两个跨膜螺旋结构域(通常在GPCR中七个)。但是,它具有其他人类嗅觉受体中未发现的其他TM。通过合并这些新颖的结构特征,我们为该受体创建了两个推定模型。我们还对接了通过实验证明与hOR17-210结合的气味配体。我们展示了如何以及为什么OR17-210的结构修饰不会阻碍该受体的功能。我们的研究表明,导致序列和结构多样性的新型基因重排可能与OR和GPCR功能及进化有关。

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