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Potential Cooperations between Odorant-Binding Proteins of the Scarab Beetle Holotrichia oblita Faldermann (Coleoptera: Scarabaeidae)

机译:金龟子甲虫Holotrichia oblita Faldermann的臭味结合蛋白之间的潜在合作(鞘翅目:圣甲虫科)

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摘要

It was previously thought that the odorant binding proteins (OBPs) in the sensillum lymph might serve as carriers, which could carry lipophilic odorant molecules to olfactory receptors. In this study, two novel OBP genes of the scarab beetle Holotrichia oblita were screened using an antennal cDNA library. The full cDNA of HoblOBP3 and HoblOBP4 was cloned using reverse transcription PCR and rapid amplification of the cDNA ends. Homology modeling of both OBPs was performed using SWISS-MODEL on-line tools. Next, the two OBPs were expressed in Escherichia coli and purified using Ni ion affinity chromatography. The ligand-binding properties of HoblOBP3 and HoblOBP4 in 42 ligands respectively were measured using the fluorescence probe N-phenyl-naphthylamine (1-NPN). The results obtained from competitive binding assays demonstrated that HoblOBP4 showed a broader range of binding affinities to the test compounds, while HoblOBP3 displays more specific binding affinity. Furthermore, other OBPs and CSPs were expressed in Escherichia coli and purified using Ni ion affinity chromatography. Binding curves were measured for binary mixtures of OBPs and CSPs using 1-NPN, and the Scatchard plots exhibited “J”-like nonlinear correlation trends in some samples. In addition, competitive binding assays of the HoblOBP1 and HoblOBP2 mixtures and of the HoblOBP2 and HoblOBP4 mixtures with representative compounds unexpectedly demonstrated good affinity, which revealed extreme differences that were only obtained using the individual proteins. In the immunocytochemical analysis, colocalization of HoblOBP1 and HoblOBP2, and of HoblOBP2 and HoblOBP4, was detected in the sensilla basiconica and sensilla placodea, respectively. All of these results suggested that HoblOBP1 and HoblOBP2, as well as HoblOBP2 and HoblOBP4, may serve as heterodimers in the sensillum lymph.
机译:以前认为,感觉淋巴中的气味结合蛋白(OBP)可能充当载体,可以将亲脂性气味分子携带到嗅觉受体。在这项研究中,使用触角cDNA文库筛选了金龟子甲虫Holotrichia oblita的两个新的OBP基因。使用逆转录PCR克隆HoblOBP3和HoblOBP4的完整cDNA,并快速扩增cDNA末端。两个OBP的同源性建模是使用SWISS-MODEL在线工具进行的。接下来,将两个OBP在大肠杆菌中表达并使用Ni离子亲和色谱法纯化。使用荧光探针N-苯基-萘胺(1-NPN)分别测量了HoblOBP3和HoblOBP4在42个配体中的配体结合特性。从竞争性结合测定中获得的结果表明,HoblOBP4显示出对测试化合物更广泛的结合亲和力,而HoblOBP3显示出更特异性的结合亲和力。此外,其他OBP和CSP在大肠杆菌中表达并使用Ni离子亲和色谱法纯化。使用1-NPN测定OBP和CSP的二元混合物的结合曲线,Scatchard图在某些样品中表现出“ J”型非线性相关趋势。此外,HoblOBP1和HoblOBP2混合物以及HoblOBP2和HoblOBP4混合物与代表性化合物的竞争性结合测定出乎意料地显示出良好的亲和力,这表明只有使用单个蛋白质才能获得的巨大差异。在免疫细胞化学分析中,分别在普通感性扁桃体和感性扁肠中检测到HoblOBP1和HoblOBP2以及HoblOBP2和HoblOBP4的共定位。所有这些结果表明,HoblOBP1和HoblOBP2以及HoblOBP2和HoblOBP4可能充当sensillum淋巴中的异二聚体。

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