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Characterization of an Amino Acid Permease from the Endomycorrhizal Fungus Glomus mosseae

机译:内生菌根真菌Glomus mosseae的氨基酸渗透酶的表征

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摘要

Arbuscular mycorrhizal (AM) fungi are capable of exploiting organic nitrogen sources, but the molecular mechanisms that control such an uptake are still unknown. Polymerase chain reaction-based approaches, bioinformatic tools, and a heterologous expression system have been used to characterize a sequence coding for an amino acid permease (GmosAAP1) from the AM fungus Glomus mosseae. The GmosAAP1 shows primary and secondary structures that are similar to those of other fungal amino acid permeases. Functional complementation and uptake experiments in a yeast mutant that was defective in the multiple amino acid uptake system demonstrated that GmosAAP1 is able to transport proline through a proton-coupled, pH- and energy-dependent process. A competitive test showed that GmosAAP1 binds nonpolar and hydrophobic amino acids, thus indicating a relatively specific substrate spectrum. GmosAAP1 mRNAs were detected in the extraradical fungal structures. Transcript abundance was increased upon exposure to organic nitrogen, in particular when supplied at 2 mm concentrations. These findings suggest that GmosAAP1 plays a role in the first steps of amino acid acquisition, allowing direct amino acid uptake from the soil and extending the molecular tools by which AM fungi exploit soil resources.
机译:丛枝菌根(AM)真菌能够利用有机氮源,但是控制这种摄取的分子机制仍然未知。基于聚合酶链反应的方法,生物信息学工具和异源表达系统已用于表征编码AM真菌Glomus mosseae的氨基酸通透酶(GmosAAP1)的序列。 GmosAAP1显示的一级和二级结构与其他真菌氨基酸通透酶相似。在多氨基酸摄取系统中存在缺陷的酵母突变体中的功能互补和摄取实验表明,GmosAAP1能够通过质子偶联,pH和能量依赖性过程转运脯氨酸。一项竞争性测试表明,GmosAAP1结合了非极性和疏水性氨基酸,因此表明了相对特异性的底物光谱。在根外真菌结构中检测到GmosAAP1 mRNA。接触有机氮后,转录物的丰度增加,尤其是当以2 mm的浓度供应时。这些发现表明,GmosAAP1在氨基酸获取的第一步中起作用,允许从土壤中直接吸收氨基酸,并扩展了AM真菌利用土壤资源开发的分子工具。

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