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果蝇味觉偏好行为需要非典型可溶性鸟苷酸环化酶。

Drosophila gustatory preference behaviors require the atypical soluble guanylyl cyclases.

机构信息

Department of Integrative Biosciences, Oregon Health and Science University, Portland, USA.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2011 Jul;197(7):717-27. doi: 10.1007/s00359-011-0634-9. Epub 2011 Feb 25.

Abstract

The intracellular messenger cGMP has been suggested to play a role in taste signal transduction in both vertebrates and invertebrates. In the present study, we have examined the role of the Drosophila atypical soluble guanylyl cyclases (sGCs), Gyc-89Da and Gyc-89Db, in larval and adult gustatory preference behaviors. We showed that in larvae, sucrose attraction requires Gyc-89Db and caffeine avoidance requires Gyc-89Da. In adult flies, sucrose attraction is unaffected by mutations in either gene whereas avoidance of low concentrations of caffeine is eliminated by loss of either gene. Similar defective behaviors were observed when cGMP increases were prevented by the expression of a cGMP-specific phosphodiesterase. We also showed that both genes were expressed in gustatory receptor neurons (GRNs) in larval and adult gustatory organs, primarily in a non-overlapping pattern, with the exception of a small group of cells in the adult labellum. In addition, in adults, several cells co-expressed the bitter taste receptor, Gr66a, with either Gyc-89Da or Gyc-89Db. We also showed that the electrophysiological responses of a GRN to caffeine were significantly reduced in flies mutant for the atypical sGCs, suggesting that at least part of the adult behavioral defects were due to a reduced ability to detect caffeine.

摘要

细胞内信使 cGMP 被认为在脊椎动物和无脊椎动物的味觉信号转导中发挥作用。在本研究中,我们研究了果蝇非典型可溶性鸟苷酸环化酶(sGCs)Gyc-89Da 和 Gyc-89Db 在幼虫和成虫味觉偏好行为中的作用。我们发现,在幼虫中,蔗糖吸引力需要 Gyc-89Db,而咖啡因回避需要 Gyc-89Da。在成年果蝇中,这两个基因的突变都不会影响蔗糖吸引力,而咖啡因的低浓度回避则被这两个基因的缺失所消除。当通过表达 cGMP 特异性磷酸二酯酶来阻止 cGMP 增加时,观察到类似的缺陷行为。我们还表明,这两个基因在幼虫和成虫味觉器官的味觉受体神经元(GRNs)中表达,主要是在非重叠模式下,除了成年唇瓣中的一小群细胞。此外,在成年果蝇中,几种细胞与 Gr66a(苦味受体)共表达,Gr66a 与 Gyc-89Da 或 Gyc-89Db 共表达。我们还表明,GRN 对咖啡因的电生理反应在非典型 sGCs 突变体果蝇中显著降低,表明至少部分成年行为缺陷是由于检测咖啡因的能力降低所致。

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