Walker William B, Smith Elaine M, Jan Taha, Zwiebel L J
Department of Biological Sciences, Centers for Molecular Neuroscience and Global Health and Programs in Development, Genetics Vanderbilt University, Nashville, TN 37232, USA.
J Insect Physiol. 2008 Apr;54(4):680-90. doi: 10.1016/j.jinsphys.2008.01.007. Epub 2008 Feb 3.
Insect sensory arrestins act to desensitize visual and olfactory signal transduction pathways, as evidenced by the phenotypic effects of mutations in the genes encoding both Arr1 and Arr2 in Drosophila melanogaster. To assess whether such arrestins play similar roles in other, more medically relevant dipterans, we examined the ability of Anopheles gambiae sensory arrestin homologs AgArr1 and AgArr2 to rescue phenotypes associated with an olfactory deficit observed in D. melanogaster arrestin mutants. Of these, only AgArr1 facilitated significant phenotypic rescue of the corresponding Drosophila arr mutant olfactory phenotype, consistent with the view that functional orthology is shared by these Arr1 homologs. These results represent the first step in the functional characterization of AgArr1, which is highly expressed in olfactory appendages of An. gambiae in which it is likely to play an essential role in olfactory signal transduction. In addition to providing insight into the common elements of the peripheral olfactory system of dipterans, this work validates the importance of AgArr1 as a potential target for novel anti-malaria strategies that focus on olfactory-based behaviors in An. gambiae.
昆虫感觉抑制蛋白可使视觉和嗅觉信号转导通路脱敏,这在果蝇中编码Arr1和Arr2的基因突变所产生的表型效应中得到了证明。为了评估此类抑制蛋白在其他与医学关系更为密切的双翅目昆虫中是否发挥类似作用,我们检测了冈比亚按蚊感觉抑制蛋白同源物AgArr1和AgArr2拯救与果蝇抑制蛋白突变体中观察到的嗅觉缺陷相关表型的能力。其中,只有AgArr1显著促进了相应果蝇arr突变体嗅觉表型的拯救,这与这些Arr1同源物具有功能直系同源性的观点一致。这些结果代表了对AgArr1进行功能表征的第一步,AgArr1在冈比亚按蚊的嗅觉附属器中高度表达,它可能在嗅觉信号转导中发挥重要作用。除了深入了解双翅目昆虫外周嗅觉系统的共同元件外,这项工作还证实了AgArr1作为一种潜在靶点的重要性,该靶点可用于针对冈比亚按蚊基于嗅觉行为的新型抗疟策略。