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Gsα参与黑腹果蝇的糖分感知。

Gsalpha is involved in sugar perception in Drosophila melanogaster.

作者信息

Ueno Kohei, Kohatsu Soh, Clay Catherine, Forte Michael, Isono Kunio, Kidokoro Yoshiaki

机构信息

Department of Behavioral Sciences, Graduate School of Medicine, Gunma University, Maebashi 371-8511, Japan.

出版信息

J Neurosci. 2006 Jun 7;26(23):6143-52. doi: 10.1523/JNEUROSCI.0857-06.2006.

Abstract

In Drosophila melanogaster, gustatory receptor genes (Grs) encode G-protein-coupled receptors (GPCRs) in gustatory receptor neurons (GRNs) and some olfactory receptor neurons. One of the Gr genes, Gr5a, encodes a sugar receptor that is expressed in a subset of GRNs and has been most extensively studied both molecularly and physiologically, but the G-protein alpha subunit (Galpha) that is coupled to this sugar receptor remains unknown. Here, we propose that Gs is the Galpha that is responsible for Gr5a-mediated sugar-taste transduction, based on the following findings: First, immunoreactivities against Gs were detected in a subset of GRNs including all Gr5a-expressing neurons. Second, trehalose-intake is reduced in flies heterozygous for null mutations in DGsalpha, a homolog of mammalian Gs, and trehalose-induced electrical activities in sugar-sensitive GRNs were depressed in those flies. Furthermore, expression of wild-type DGsalpha in sugar-sensitive GRNs in heterozygotic DGsalpha mutant flies rescued those impairments. Third, expression of double-stranded RNA for DGsalpha in sugar-sensitive GRNs depressed both behavioral and electrophysiological responses to trehalose. Together, these findings indicate that DGsalpha is involved in trehalose perception. We suggest that sugar-taste signals are processed through the Gsalpha-mediating signal transduction pathway in sugar-sensitive GRNs in Drosophila.

摘要

在黑腹果蝇中,味觉受体基因(Grs)在味觉受体神经元(GRNs)和一些嗅觉受体神经元中编码G蛋白偶联受体(GPCRs)。其中一个Gr基因Gr5a编码一种糖受体,该受体在一部分GRNs中表达,并且在分子和生理方面都得到了最广泛的研究,但是与这种糖受体偶联的G蛋白α亚基(Galpha)仍然未知。在此,基于以下发现,我们提出Gs是负责Gr5a介导的糖味转导的Galpha:第一,在包括所有表达Gr5a的神经元在内的一部分GRNs中检测到了针对Gs的免疫反应性。第二,在哺乳动物Gs的同源物DGsalpha的无效突变杂合子果蝇中,海藻糖摄取减少,并且在这些果蝇中,糖敏感GRNs中海藻糖诱导的电活动受到抑制。此外,在杂合子DGsalpha突变果蝇的糖敏感GRNs中表达野生型DGsalpha挽救了这些损伤。第三,在糖敏感GRNs中表达针对DGsalpha的双链RNA降低了对海藻糖的行为和电生理反应。总之,这些发现表明DGsalpha参与了海藻糖感知。我们认为,在果蝇的糖敏感GRNs中,糖味信号是通过Gsalpha介导的信号转导途径进行处理的。

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