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Isolation and Characterization of Two Ammonium Permease Genes, meaA and mepA, from Aspergillus nidulans

机译:构巢曲霉中两个铵通透酶基因meaA和mepA的分离和鉴定

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Ammonium and the analogue methylammonium are taken into the cell by active transport systems which constitute a family of transmembrane proteins that have been identified in fungi, bacteria, plants, and animals. Two genes from Aspergillus nidulans, mepA and meaA, which encode ammonium transporters with different affinities have been characterized. The MepA transporter exhibits the highest affinity for methylammonium (Km0, 44.3 μM); in comparison, the Km for MeaA is 3.04 mM. By use of targeted gene replacement strategies, meaA and mepA deletion mutants were created. Deletion of both meaA and mepA resulted in the inability of the strain to grow on ammonium concentrations of less than 10 mM. The single meaA deletion mutant exhibited reduced growth at the same concentrations, whereas the mepA deletion mutant displayed wild-type growth. Interestingly, multiple copies of mepA were found to complement the methylammonium resistance phenotype conferred by the deletion of meaA. The expression profiles for mepA and meaA differed; the mepA transcript was detected only in nitrogen-starved cultures, whereas meaA was expressed under both ammonium-sufficient and nitrogen starvation conditions. Together, these results indicate that MeaA constitutes the major ammonium transport activity and is required for the optimal growth of A. nidulans on ammonium as the sole nitrogen source and that MepA probably functions in scavenging low concentrations of ammonium under nitrogen starvation conditions.
机译:铵和类似物甲基铵通过主动转运系统进入细胞,该转运系统构成了已在真菌,细菌,植物和动物中鉴定出的跨膜蛋白家族。已经鉴定了曲霉菌中的两个基因,它们分别是编码不同亲和力的铵转运蛋白的mepA和emaA。 MepA转运蛋白对甲基铵具有最高的亲和力( K m 0 ,44.3μM);相比之下,MeaA的 K m 为3.04 mM。通过有针对性的基因替换策略,创建了 meaA mepA 缺失突变体。 meaA mepA 的缺失导致该菌株无法在低于10 mM的铵浓度下生长。单个 meaA 缺失突变体在相同浓度下表现出生长减少,而 mepA 缺失突变体表现出野生型生长。有趣的是,发现 mepA 的多个副本可补充 meaA 缺失所赋予的甲基铵抗性表型。 mepA meaA 的表达谱不同; mepA 转录本仅在缺氮的培养物中检测到,而 meaA 在铵充足和缺氮条件下均表达。总之,这些结果表明MeaA构成了主要的铵转运活性,并且是 A 最佳生长所必需的。 nidulans 上的铵盐是唯一的氮源,并且MepA可能在缺氮条件下清除低浓度的铵盐。

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