The movement of ammonium across biological membranes is mediated in both prokaryotes and eukaryotes by ammonium transport proteins (AMT/MEP) that constitute a family of related sequences. We have previously identified two ammonium permeases in Aspergillus nidulans, encoded by the meaA and mepA genes. Here we show that meaA is expressed in the presence of ammonium, consistent with the function of MeaA as the main ammonium transporter required for optimal growth on ammonium as a nitrogen source. In contrast, mepA, which encodes a high-affinity ammonium permease, is expressed only under nitrogen-limiting or starvation conditions. We have identified two additional AMT/MEP-like genes in A. nidulans, namely, mepB, which encodes a second high-affinity ammonium transporter expressed only in response to complete nitrogen starvation, and mepC, which is expressed at low levels under all nitrogen conditions. The MepC gene product is more divergent than the other A. nidulans AMT/MEP proteins and is not thought to significantly contribute to ammonium uptake under normal conditions. Remarkably, the expression of each AMT/MEP gene under all nitrogen conditions is regulated by the global nitrogen regulatory GATA factor AreA. Therefore, AreA is also active under nitrogen-sufficient conditions, along with its established role as a transcriptional activator in response to nitrogen limitation.

译文

在原核生物和真核生物中,铵跨生物膜的运动均由构成相关序列家族的铵转运蛋白 (AMT/MEP) 介导。我们先前已经在构巢曲霉中鉴定出两种由meaA和mepA基因编码的铵盐。在这里,我们表明meaA在铵的存在下表达,这与MeaA作为铵作为氮源的最佳生长所需的主要铵转运蛋白的功能一致。相反,编码高亲和力铵渗透酶的mepA仅在氮限制或饥饿条件下表达。我们已经在niddulans中鉴定了另外两个AMT/MEP样基因,即mepB和mepC,mepB编码仅在完全氮饥饿时表达的第二种高亲和力铵转运蛋白,mepC在所有氮条件下均以低水平表达。MepC基因产物比其他A.Niddulans AMT/MEP蛋白更分散,并且被认为在正常条件下不会显着促进铵的吸收。值得注意的是,在所有氮条件下,每个AMT/MEP基因的表达均受全球氮调节GATA因子区域的调节。因此,AreA在氮充足的条件下也具有活性,以及其作为响应氮限制的转录激活因子的既定作用。

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