首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Mutational Analysis of Cysteine Residues of the Insect Odorant Co-receptor (Orco) from Drosophila melanogaster Reveals Differential Effects on Agonist- and Odorant-tuning Receptor-dependent Activation
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Mutational Analysis of Cysteine Residues of the Insect Odorant Co-receptor (Orco) from Drosophila melanogaster Reveals Differential Effects on Agonist- and Odorant-tuning Receptor-dependent Activation

机译:果蝇昆虫气味共受体(Orco)的半胱氨酸残基的突变分析揭示了对激动剂和气味调节受体依赖性激活的差异作用。

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摘要

Insect odorant receptors are heteromeric odorant-gated cation channels comprising a conventional odorant-sensitive tuning receptor (ORx) and a highly conserved co-receptor known as Orco. Orco is found only in insects, and very little is known about its structure and the mechanism leading to channel activation. In the absence of an ORx, Orco forms homomeric channels that can be activated by a synthetic agonist, VUAA1. Drosophila melanogaster Orco (DmelOrco) contains eight cysteine amino acid residues, six of which are highly conserved. In this study, we replaced individual cysteine residues with serine or alanine and expressed Orco mutants in Flp-In 293 T-Rex cells. Changes in intracellular Ca2+ levels were used to determine responses to VUAA1. Replacement of two cysteines (Cys-429 and Cys-449) in a predicted intracellular loop (ICL3), individually or together, gave variants that all showed similar increases in the rate of response and sensitivity to VUAA1 compared with wild-type DmelOrco. Kinetic modeling indicated that the response of the Orco mutants to VUAA1 was faster than wild-type Orco. The enhanced sensitivity and faster response of the Cys mutants was confirmed by whole-cell voltage clamp electrophysiology. In contrast to the results from direct agonist activation of Orco, the two cysteine replacement mutants when co-expressed with a tuning receptor (DmelOR22a) showed an ∼10-fold decrease in potency for activation by 2-methyl hexanoate. Our work has shown that intracellular loop 3 is important for Orco channel activation. Importantly, this study also suggests differences in the structural requirements for the activation of homomeric and heteromeric Orco channel complexes.
机译:昆虫加味剂受体是杂味剂加味剂门控的阳离子通道,包含常规的加味剂敏感性调节受体(ORx)和高度保守的共受体Orco。 Orco仅在昆虫中发现,对其结构和导致通道活化的机理知之甚少。在没有ORx的情况下,Orco会形成可由合成激动剂VUAA1激活的同型通道。果蝇果蝇(DmelOrco)含有八个半胱氨酸氨基酸残基,其中六个是高度保守的。在这项研究中,我们用丝氨酸或丙氨酸替换了单个半胱氨酸残基,并在Flp-In 293 T-Rex细胞中表达了Orco突变体。细胞内Ca 2 + 水平的变化用于确定对VUAA1的反应。预测的细胞内环(ICL3)中两个半胱氨酸(Cys-429和Cys-449)的取代单独或一起产生的变体,与野生型DmelOrco相比,都显示出对VUAA1的响应率和敏感性相似的增加。动力学建模表明,Orco突变体对VUAA1的反应比野生型Orco更快。通过全细胞电压钳电生理学证实了Cys突变体的增强的敏感性和更快的响应。与Orco直接激动剂激活的结果相反,两个半胱氨酸替代突变体与调节受体(DmelOR22a)共表达时,被2-己酸甲酯激活的能力降低了约10倍。我们的工作表明,细胞内环3对于Orco通道激活很重要。重要的是,这项研究还提出了同构和异构Orco通道复合物激活的结构要求方面的差异。

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