Ewart G D, Cannell D, Cox G B, Howells A J
Division of Biochemistry and Molecular Biology, John Curtin School of Medical Research, Canberra City, Australia.
J Biol Chem. 1994 Apr 8;269(14):10370-7.
The white, brown, and scarlet genes of Drosophila melanogaster encode three proteins that belong to the Traffic ATPase superfamily of transmembrane permeases and are involved in the transport of guanine and tryptophan (precursors of the red and brown eye pigments). We have determined the nucleotide sequences of two mutant white alleles (wco2 and wBwx) that cause reduced red pigmentation but have no effect on brown pigmentation. In wco2 the effect is only observed when interacting with the bw6 allele or a newly isolated allele (bwT50). These alleles of the brown gene were cloned and sequenced. In wco2 the codon for glycine 588 is changed to encode serine; in wBwx the triplet ATC encoding isoleucine 581 is deleted; asparagine 638 is changed to threonine in bw6, and glycine 578 is changed to aspartate in bwT50. No other relevant changes to the gene structures were detected. P-element-mediated germline transduction was used to construct a fly strain containing a white gene with a mutation of the nucleotide binding domain. Such flies had white eyes, indicating that the mutated white gene was unable to support either guanine or tryptophan transport. The implications of these mutations are discussed in terms of a model of the Drosophila pigment precursor transport system.
黑腹果蝇的白色、棕色和猩红色基因编码三种蛋白质,它们属于跨膜通透酶的运输ATP酶超家族,参与鸟嘌呤和色氨酸(红色和棕色眼色素的前体)的运输。我们确定了两个导致红色色素沉着减少但对棕色色素沉着无影响的白色突变等位基因(wco2和wBwx)的核苷酸序列。在wco2中,只有当与bw6等位基因或新分离的等位基因(bwT50)相互作用时才会观察到这种效应。克隆并测序了棕色基因的这些等位基因。在wco2中,甘氨酸588的密码子发生改变以编码丝氨酸;在wBwx中,编码异亮氨酸581的三联体ATC缺失;在bw6中,天冬酰胺638变为苏氨酸,在bwT50中,甘氨酸578变为天冬氨酸。未检测到基因结构的其他相关变化。利用P因子介导的种系转导构建了一个含有核苷酸结合结构域发生突变的白色基因的果蝇品系。这些果蝇有白色的眼睛,表明突变的白色基因无法支持鸟嘌呤或色氨酸的运输。根据果蝇色素前体运输系统的模型讨论了这些突变的意义。