Carraher Colm, Nazmi Ali Reza, Newcomb Richard D, Kralicek Andrew
The New Zealand Institute for Plant & Food Research Limited, Private Bag 92169, Auckland 1142, New Zealand.
Protein Expr Purif. 2013 Aug;90(2):160-9. doi: 10.1016/j.pep.2013.06.002. Epub 2013 Jun 13.
Insect odorant receptors (ORs) are seven transmembrane domain proteins that comprise a novel family of ligand-gated non-selective cation channels. The functional channel is made up of an odour activated ligand-binding OR and the OR co-receptor, Orco. However, the structure, stoichiometry and mechanism of activation of the receptor complex are not well understood. Here we demonstrate that baculovirus-mediated Sf9 cell expression and wheat germ cell-free expression, but not Escherichia coli cell-based or cell-free expression, can be used successfully to over-express a selection of insect ORs. From a panel of 19 detergents, 1%w/v Zwittergent 3-16 was able to solubilise five Drosophila melanogaster ORs produced from both eukaryotic expression systems. A large-scale purification protocol was then developed for DmOrco and the ligand-binding receptor, DmOr22a. The proteins were nickel-affinity purified using a deca-histidine tag in a buffer containing 0.2 mM Zwittergent 3-16, followed by size exclusion chromatography. These purified ORs appear to form similarly sized protein-detergent complexes when isolated from both expression systems. Circular dichroism analysis of both purified proteins suggests they are folded correctly. We also provide evidence that when DmOrco is expressed in Sf9 cells it undergoes post translational modification, probably glycosylation. Finally we show that the recombinant ORs can be incorporated into pre-formed liposomes. The ability to recombinantly express and purify insect ORs to homogeneity on a preparative scale, as well as insert them into liposomes, is a major step forward in enabling future structural and functional studies, as well as their use in OR based biosensors.
昆虫气味受体(ORs)是一类七跨膜结构域蛋白,构成了一个新型的配体门控非选择性阳离子通道家族。功能性通道由气味激活的配体结合型OR和OR共受体Orco组成。然而,受体复合物的结构、化学计量和激活机制尚不清楚。在这里,我们证明杆状病毒介导的Sf9细胞表达和麦胚无细胞表达,而不是基于大肠杆菌细胞的表达或无细胞表达,可成功用于过量表达多种昆虫ORs。从19种去污剂中筛选出1%w/v的两性离子去污剂3-16能够溶解从两种真核表达系统产生的5种黑腹果蝇ORs。然后为DmOrco和配体结合受体DmOr22a制定了大规模纯化方案。使用含有0.2 mM两性离子去污剂3-16的缓冲液中的十组氨酸标签对蛋白质进行镍亲和纯化,随后进行尺寸排阻色谱。当从两种表达系统中分离时,这些纯化的ORs似乎形成了大小相似的蛋白质-去污剂复合物。对两种纯化蛋白质的圆二色性分析表明它们折叠正确。我们还提供证据表明,当DmOrco在Sf9细胞中表达时,它会发生翻译后修饰,可能是糖基化。最后,我们表明重组ORs可以整合到预先形成的脂质体中。能够在制备规模上重组表达和纯化昆虫ORs并使其达到同质,以及将它们插入脂质体中,是在未来进行结构和功能研究以及将其用于基于OR的生物传感器方面向前迈出的重要一步。