Ueno Kohei, Kohatsu Soh, Clay Catherine, Forte Michael, Isono Kunio, Kidokoro Yoshiaki
Department of Behavioral Sciences, Graduate School of Medicine, Gunma University, Maebashi 371-8511, Japan.
J Neurosci. 2006 Jun 7;26(23):6143-52. doi: 10.1523/JNEUROSCI.0857-06.2006.
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.
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。