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Amino Acid Catabolism by an areA-Regulated Gene Encoding an l-Amino Acid Oxidase with Broad Substrate Specificity in Aspergillus nidulans

机译:由areA调控基因编码构巢曲霉中具有广泛底物特异性的I-氨基酸氧化酶的氨基酸代谢。

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摘要

The filamentous fungus Aspergillus nidulans can use a wide range of compounds as nitrogen sources. The synthesis of the various catabolic enzymes needed to breakdown these nitrogen sources is regulated by the areA gene, which encodes a GATA transcription factor required to activate gene expression under nitrogen-limiting conditions. The areA102 mutation results in pleiotropic effects on nitrogen source utilization, including better growth on certain amino acids as nitrogen sources. Mutations in the sarA gene were previously isolated as suppressors of the strong growth of an areA102 strain on l-histidine as a sole nitrogen source. We cloned the sarA gene by complementation of a sarA mutant and showed that it encodes an l-amino acid oxidase enzyme with broad substrate specificity. Elevated expression of this enzyme activity in an areA102 background accounts for the strong growth of these strains on amino acids that are substrates for this enzyme. Loss of function sarA mutations, which abolish the l-amino acid oxidase activity, reverse the areA102 phenotype. Growth tests with areA102 and sarA mutants show that this enzyme is the primary route of catabolism for some amino acids, while other amino acids are metabolized through alternative pathways that yield either ammonium or glutamate for growth.
机译:丝状真菌构巢曲霉可以使用多种化合物作为氮源。分解这些氮源所需的各种分解代谢酶的合成受areA基因调控,areA基因编码在氮限制条件下激活基因表达所需的GATA转录因子。 areA102突变导致多效性对氮源利用的影响,包括某些氨基酸作为氮源的更好生长。先前分离出sarA基因中的突变,将其作为areA102菌株在作为唯一氮源的I-组氨酸上强生长的抑制剂。我们通过互补sarA突变体克隆了sarA基因,并表明它编码具有广泛底物特异性的l-氨基酸氧化酶。在areA102背景中此酶活性的升高表达说明了这些菌株在作为该酶底物的氨基酸上的强劲生长。丧失l-氨基酸氧化酶活性的功能性sarA突变使areA102表型逆转。使用areA102和sarA突变体的生长测试表明,该酶是某些氨基酸分解代谢的主要途径,而其他氨基酸则通过产生铵或谷氨酸生长的替代途径进行代谢。

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