Warner T S, Sinclair D A, Fitzpatrick K A, Singh M, Devlin R H, Honda B M
Institute of Molecular Biology and Biochemistry, Simon Fraser University, Burnaby, BC, Canada.
Genome. 1998 Apr;41(2):236-43.
Mutations in a number of genes affect eye colour in Drosophila melanogaster; some of these "eye-colour" genes have been shown to be involved in various aspects of cellular transport processes. In addition, combinations of viable mutant alleles of some of these genes, such as carnation (car) combined with either light (lt) or deep-orange (dor) mutants, show lethal interactions. Recently, dor was shown to be homologous to the yeast gene PEP3 (VPS18), which is known to be involved in intracellular trafficking. We have undertaken to extend our earlier work on the lt gene, in order to examine in more detail its expression pattern and to characterize its gene product via sequencing of a cloned cDNA. The gene appears to be expressed at relatively high levels in all stages and tissues examined, and shows strong homology to VPS41, a gene involved in cellular-protein trafficking in yeast and higher eukaryotes. Further genetic experiments also point to a role for lt in transport processes: we describe lethal interactions between viable alleles of lt and dor, as well as phenotypic interactions (reductions in eye pigment) between allels of lt and another eye-colour gene, garnet (g), whose gene product has close homology to a subunit of the human adaptor complex, AP-3.
多个基因的突变会影响黑腹果蝇的眼睛颜色;其中一些“眼睛颜色”基因已被证明参与细胞运输过程的各个方面。此外,这些基因中一些可行突变等位基因的组合,如康乃馨(car)与浅色(lt)或深橙色(dor)突变体组合,表现出致死相互作用。最近,dor被证明与酵母基因PEP3(VPS18)同源,已知该基因参与细胞内运输。我们已着手扩展我们早期对lt基因的研究工作,以便更详细地研究其表达模式,并通过克隆 cDNA 的测序来表征其基因产物。该基因似乎在所有检测的阶段和组织中都以相对较高的水平表达,并且与VPS41具有高度同源性,VPS41是一个参与酵母和高等真核生物细胞蛋白质运输的基因。进一步的遗传实验也表明lt在运输过程中发挥作用:我们描述了lt和dor的可行等位基因之间的致死相互作用,以及lt等位基因与另一个眼睛颜色基因石榴石(g)之间的表型相互作用(眼睛色素减少),其基因产物与人类衔接复合体AP - 3的一个亚基具有密切同源性。