Architecture et Fonction des Macromolécules Biologiques, UMR 6098 CNRS and Universités of Marseille, 163 Av. de Luminy Case 932, 13288 Marseille Cedex 09, France.
Insect Biochem Mol Biol. 2012 Jan;42(1):41-50. doi: 10.1016/j.ibmb.2011.10.005. Epub 2011 Oct 31.
Apis mellifera (Amel) relies on its olfactory system to detect and identify new-sources of floral food. The Odorant-Binding Proteins (OBPs) are the first proteins involved in odorant recognition and interaction, before activation of the olfactory receptors. The Amel genome possess a set of 21 OBPs, much fewer compared to the 60-70 OBPs found in Diptera genomes. We have undertaken a structural proteomics study of Amel OBPs, alone or in complex with odorant or model compounds. We report here the first 3D structure of a member of the C-minus class OBPs, AmelOBP14, characterized by only two disulfide bridges of the three typical of classical OBPs. We show that AmelOBP14 possesses a core of 6 α-helices comparable to that of classical OBPs, and an extra exposed C-terminal helix. Its binding site is located within this core and is completely closed. Fluorescent experiments using 1-NPN displacement demonstrate that AmelOBP14 is able to bind several compounds with sub micromolar dissociation constants, among which citralva and eugenol exhibit the highest affinities. We have determined the structures of AmelOBP14 in complex with 1-NPN, eugenol and citralva, explaining their strong binding. Finally, by introducing a double cysteine mutant at positions 44 and 97, we show that a third disulfide bridge was formed in the same position as in classical OBPs without disturbing the fold of AmelOBP14.
意大利蜜蜂(Apis mellifera)依靠其嗅觉系统来检测和识别新的花卉食物来源。气味结合蛋白(OBPs)是参与气味识别和相互作用的第一批蛋白质,在激活嗅觉受体之前。Amel 基因组拥有一套 21 个 OBPs,与双翅目基因组中发现的 60-70 个 OBPs 相比要少得多。我们已经对 Amel OBPs 进行了结构蛋白质组学研究,单独或与气味或模型化合物结合。我们在这里报告了 C- minus 类 OBPs 成员的第一个 3D 结构,AmelOBP14,其特征仅为经典 OBPs 中三个典型二硫键中的两个。我们表明,AmelOBP14 具有与经典 OBPs 相当的 6 个α-螺旋核心,以及一个额外的暴露的 C 端螺旋。其结合位点位于该核心内,完全封闭。使用 1-NPN 置换的荧光实验表明,AmelOBP14 能够结合具有亚微摩尔离解常数的几种化合物,其中柠檬醛和丁香酚具有最高的亲和力。我们已经确定了 AmelOBP14 与 1-NPN、丁香酚和柠檬醛复合物的结构,解释了它们的强结合。最后,通过在 44 位和 97 位引入双半胱氨酸突变,我们表明在与经典 OBPs 相同的位置形成了第三个二硫键,而不会干扰 AmelOBP14 的折叠。