Ahmed Tofael, Zhang Tian-tao, Wang Zhen-ying, He Kang-lai, Bai Shu-xiong
State Key Laboratory for the Biology of the Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China; Bangladesh Sugarcane Research Institute, Ishurdi, Pabna, Bangladesh.
State Key Laboratory for the Biology of the Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China.
PLoS One. 2014 Apr 4;9(4):e93501. doi: 10.1371/journal.pone.0093501. eCollection 2014.
Odorant binding proteins (OBPs) play a central role in transporting odorant molecules from the sensillum lymph to olfactory receptors to initiate behavioral responses. In this study, the OBP of Macrocentrus cingulum McinOBP1 was expressed in Escherichia coli and purified by Ni ion affinity chromatography. Real-time PCR experiments indicate that the McinOBP1 is expressed mainly in adult antennae, with expression levels differing by sex. Ligand-binding experiments using N-phenyl-naphthylamine (1-NPN) as a fluorescent probe demonstrated that the McinOBP1 can bind green-leaf volatiles, including aldehydes and terpenoids, but also can bind aliphatic alcohols with good affinity, in the order trans-2-nonenal>cis-3-hexen-1-ol>trans-caryophelle, suggesting a role of McinOBP1 in general odorant chemoreception. We chose those three odorants for further homology modeling and ligand docking based on their binding affinity. The Val58, Leu62 and Glu130 are the key amino acids in the binding pockets that bind with these three odorants. The three mutants, Val58, Leu62 and Glu130, where the valine, leucine and glutamic residues were replaced by alanine, proline and alanine, respectively; showed reduced affinity to these odorants. This information suggests, Val58, Leu62 and Glu130 are involved in the binding of these compounds, possibly through the specific recognition of ligands that forms hydrogen bonds with the ligands functional groups.
气味结合蛋白(OBPs)在将气味分子从感受器淋巴转运到嗅觉受体以启动行为反应中起着核心作用。在本研究中,腰带长体茧蜂的McinOBP1在大肠杆菌中表达,并通过镍离子亲和层析进行纯化。实时PCR实验表明,McinOBP1主要在成虫触角中表达,且表达水平存在性别差异。使用N-苯基萘胺(1-NPN)作为荧光探针的配体结合实验表明,McinOBP1可以结合绿叶挥发物,包括醛类和萜类化合物,还能以良好的亲和力结合脂肪醇,结合顺序为反-2-壬烯醛>顺-3-己烯-1-醇>反式石竹烯,这表明McinOBP1在一般气味化学感受中发挥作用。基于它们的结合亲和力,我们选择这三种气味剂进行进一步的同源建模和配体对接。缬氨酸58、亮氨酸62和谷氨酸130是与这三种气味剂结合的结合口袋中的关键氨基酸。三个突变体,即缬氨酸58、亮氨酸62和谷氨酸130,其中缬氨酸、亮氨酸和谷氨酸残基分别被丙氨酸、脯氨酸和丙氨酸取代;对这些气味剂的亲和力降低。这些信息表明,缬氨酸58、亮氨酸62和谷氨酸130参与了这些化合物的结合,可能是通过与配体官能团形成氢键的配体特异性识别来实现的。