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Discovery of Novel Ligands for Mouse Olfactory Receptor MOR42-3 Using an In Silico Screening Approach and In Vitro Validation

机译:使用计算机筛选方法和体外验证发现小鼠嗅觉受体MOR42-3的新型配体。

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摘要

The ligands for many olfactory receptors remain largely unknown despite successful heterologous expression of these receptors. Understanding the molecular receptive range of olfactory receptors and deciphering the olfactory recognition code are hampered by the huge number of odorants and large number of olfactory receptors, as well as the complexity of their combinatorial coding. Here, we present an in silico screening approach to find additional ligands for a mouse olfactory receptor that allows improved definition of its molecular receptive range. A virtual library of 574 odorants was screened against a mouse olfactory receptor MOR42-3. We selected the top 20 candidate ligands using two different scoring functions. These 40 odorant candidate ligands were then tested in vitro using the Xenopus oocyte heterologous expression system and two-electrode voltage clamp electrophysiology. We experimentally confirmed 22 of these ligands. The candidate ligands were screened for both agonist and antagonist activity. In summary, we validated 19 agonists and 3 antagonists. Two of the newly identified antagonists were of low potency. Several previously known ligands (mono- and dicarboxylic acids) are also confirmed in this study. However, some of the newly identified ligands were structurally dissimilar compounds with various functional groups belonging to aldehydes, phenyls, alkenes, esters and ethers. The high positive predictive value of our in silico approach is promising. We believe that this approach can be used for initial deorphanization of olfactory receptors as well as for future comprehensive studies of molecular receptive range of olfactory receptors.
机译:尽管这些受体成功地异源表达,但许多嗅觉受体的配体仍然很大程度上未知。大量的气味和大量的嗅觉受体,以及它们的组合编码的复杂性,阻碍了对嗅觉受体的分子接受范围的理解和对嗅觉识别代码的解密。在这里,我们提出了一种计算机筛选方法,以寻找小鼠嗅觉受体的其他配体,从而可以改善其分子接受范围的定义。针对小鼠嗅觉受体MOR42-3筛选了574种虚拟剂的虚拟文库。我们使用两种不同的评分功能选择了排名前20位的候选配体。然后使用非洲爪蟾卵母细胞异源表达系统和两电极电压钳电生理学在体外测试这40种有气味的候选配体。我们通过实验证实了其中22种配体。筛选候选配体的激动剂和拮抗剂活性。总之,我们验证了19种激动剂和3种拮抗剂。新近鉴定出的两种拮抗剂效能低下。这项研究还证实了几种先前已知的配体(一元和二元羧酸)。然而,一些新近鉴定的配体是结构不同的化合物,其具有属于醛,苯基,烯烃,酯和醚的各种官能团。我们的计算机模拟方法具有很高的积极预测价值,这是有希望的。我们认为,该方法可用于嗅觉受体的最初去孤儿化以及将来对嗅觉受体的分子接受范围进行全面研究。

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