Regenberg B, Holmberg S, Olsen L D, Kielland-Brandt M C
Department of Yeast Genetics, Carlsberg Laboratory, DK-2500 Copenhagen Valby, Denmark.
Curr Genet. 1998 Mar;33(3):171-7. doi: 10.1007/s002940050324.
Genes encoding homologues of known amino-acid permeases were deleted in a strain also deficient in the general amino-acid permease. The uptake capacity of the mutants was investigated for several L-alpha-amino acids. Deletion of a gene denoted DIP5 results in the loss of L-aspartate and L-glutamate uptake. The dip5 mutation caused a several hundred-fold reduction of uptake of the two amino acids, both in cells grown on proline as a nitrogen source and in cells grown on ammonium. DIP5-dependent uptake of L-aspartate and L-glutamate was somewhat lower in ammonium-grown cells than in proline-grown cells. Transcriptional regulation is at least partially responsible for this difference, as shown by assaying the DIP5 promoter fused to lacZ. This suggests that the promoter is subject to nitrogen catabolite repression. Transport of a few other amino acids was moderately affected by dip5 but was not competed by L-aspartate in the DIP5 parental strain; transport of these amino acids is therefore unlikely to be mediated by Dip5p. Our results suggest that DIP5 encodes an amino-acid permease with a high transport capacity and a high affinity for L-glutamate and L-aspartate, with a Kt of about 50 microM for both.
在一株同时缺乏通用氨基酸通透酶的菌株中,编码已知氨基酸通透酶同源物的基因被删除。研究了这些突变体对几种L-α-氨基酸的摄取能力。删除一个名为DIP5的基因会导致L-天冬氨酸和L-谷氨酸摄取的丧失。dip5突变导致这两种氨基酸的摄取在以脯氨酸作为氮源生长的细胞和以铵生长的细胞中均降低了数百倍。在以铵生长的细胞中,DIP5依赖性的L-天冬氨酸和L-谷氨酸摄取比在以脯氨酸生长的细胞中略低。如通过检测与lacZ融合的DIP5启动子所示,转录调控至少部分地导致了这种差异。这表明该启动子受到氮分解代谢物阻遏。dip5对其他几种氨基酸的转运有中度影响,但在DIP5亲本菌株中不受L-天冬氨酸的竞争;因此这些氨基酸的转运不太可能由Dip5p介导。我们的结果表明,DIP5编码一种对L-谷氨酸和L-天冬氨酸具有高转运能力和高亲和力的氨基酸通透酶,两者的Kt约为50 microM。