Ueno K, Ohta M, Morita H, Mikuni Y, Nakajima S, Yamamoto K, Isono K
Graduate School of Information Sciences, Tohoku University, Sendai 980-8579, Japan.
Curr Biol. 2001 Sep 18;11(18):1451-5. doi: 10.1016/s0960-9822(01)00450-x.
Drosophila taste gene Tre is located on the distal X chromosome and controls gustatory sensitivity to a subset of sugars [1, 2]. Two adjacent, seven-transmembrane domain genes near the Tre locus are candidate genes for Tre. One (CG3171) encodes a rhodopsin family G protein receptor [3, 4], and the other (Gr5a) is a member of a chemosensory gene family encoding a putative gustatory receptor [5-7]. We carried out molecular analyses of mutations in Tre to elucidate their involvement in the gustatory phenotype. Here, we show that Tre mutations induced by P element-mediated genomic deletions disrupt Gr5a gene organization and the expression of Gr5a mRNA, while disruption of the CG3171 gene or its expression was not always associated with mutations in Tre. In flies with the spontaneous mutation Tre(01), both CG3171 and Gr5a mRNAs are transcribed. Coding sequences of these two candidate genes were compared among various strains. A total of three polymorphic sites leading to amino acid changes in CG3171 were not correlated with the gustatory phenotype. Among four nonsynonymous sites in Gr5a, a single nucleotide polymorphism leading to an Ala218Thr substitution in the predicted second intracellular loop cosegregated with Tre(01). Taken together, the mutation analyses support that Gr5a is allelic to Tre.
果蝇味觉基因Tre位于X染色体远端,控制对部分糖类的味觉敏感性[1,2]。Tre基因座附近的两个相邻的七跨膜结构域基因是Tre的候选基因。其中一个(CG3171)编码视紫红质家族G蛋白受体[3,4],另一个(Gr5a)是编码假定味觉受体的化学感应基因家族的成员[5-7]。我们对Tre中的突变进行了分子分析,以阐明它们在味觉表型中的作用。在此,我们表明,P元件介导的基因组缺失诱导的Tre突变破坏了Gr5a基因结构和Gr5a mRNA的表达,而CG3171基因的破坏或其表达并不总是与Tre突变相关。在具有自发突变Tre(01)的果蝇中,CG3171和Gr5a mRNA均被转录。比较了不同品系中这两个候选基因的编码序列。CG3171中共有三个导致氨基酸变化的多态性位点与味觉表型无关。在Gr5a的四个非同义位点中,预测的第二个细胞内环中导致Ala218Thr替换的单核苷酸多态性与Tre(01)共分离。综上所述,突变分析支持Gr5a与Tre等位。