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Cell-free expression, purification, and ligand-binding analysis of Drosophila melanogaster olfactory receptors DmOR67a, DmOR85b and DmORCO

机译:果蝇嗅觉受体DmOR67a,DmOR85b和DmORCO的无细胞表达,纯化和配体结合分析

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Insects transmit numerous devastating diseases, including malaria, dengue fever, and sleeping sickness. Olfactory cues guide insects to their hosts, and are thus responsible for disease transmission. Understanding the molecular basis of insect olfaction could facilitate the development of interventions. The first step is to heterologously overexpress and purify insect olfactory receptors (ORs). This is challenging, as ORs are membrane proteins. Here, we show that insect ORs and their co-receptor can be expressed in an E. coli cell-free system. After immunoaffinity chromatography, the ORs are ~95% pure, and up to 1?mg/10?ml reaction is obtained. Circular dichroism together with microscale thermophoresis indicate that each receptor is properly folded, and can bind its respective ligand. This is the first time insect ORs have been expressed in an E. coli system. The methods described here could facilitate future structure-function studies, which may aid in developments to alleviate the suffering of millions caused by insect-transmitted diseases.
机译:昆虫传播多种毁灭性疾病,包括疟疾,登革热和昏睡病。嗅觉提示将昆虫引导到它们的宿主,从而导致疾病传播。了解昆虫嗅觉的分子基础可以促进干预措施的发展。第一步是异源过表达和纯化昆虫嗅觉受体(OR)。这是具有挑战性的,因为OR是膜蛋白。在这里,我们显示昆虫ORs及其共受体可以在大肠杆菌无细胞系统中表达。免疫亲和层析后,ORs纯度约为95%,反应量最高可达1?mg / 10?ml。圆二色性和微尺度热泳表明每个受体都正确折叠,并且可以结合其各自的配体。这是昆虫ORs在大肠杆菌系统中的首次表达。这里描述的方法可以促进未来的结构功能研究,这可能有助于减轻昆虫传播疾病引起的数百万人的痛苦的发展。

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