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A Glutamate Mutase Is Involved in the Biosynthesis of the Lipopeptide Antibiotic Friulimicin in Actinoplanes friuliensis.

机译:谷氨酸突变酶参与猕猴桃放线菌中脂肽抗生素弗留霉素的生物合成。

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Actinoplanes friuliensis produces the lipopeptide antibiotic friulimicin. This antibiotic is active against gram-positive bacteria such as multiresistant Enterococcus and Staphylococcus strains. It consists of 10 amino acids that form a ring structure and 1 exocyclic amino acid to which an acyl residue is attached. By a reverse genetic approach, biosynthetic genes were identified that are required for the nonribosomal synthesis of the antibiotic. In close proximity two genes (glmA and glmB) were found which are involved in the production of methylaspartate, one of the amino acids of the peptide core. Methylaspartate is synthesized by a glutamate mutase mechanism, which was up to now only described for glutamate fermentation in Clostridium sp. or members of the family ENTEROBACTERIACEAE: The active enzyme consists of two subunits, and the corresponding genes overlap each other. To demonstrate enzyme activity in a heterologous host, it was necessary to genetically fuse glmA and glmB. The resulting gene was overexpressed in Streptomyces lividans, and the fusion protein was purified in an active form. For gene disruption mutagenesis, a host-vector system was established which enables genetic manipulation of Actinoplanes spp. for the first time. Thus, targeted inactivation of biosynthetic genes was possible, and their involvement in friulimicin biosynthesis was demonstrated.
机译:放线猕猴桃产生脂肽抗生素氟里米星。这种抗生素对革兰氏阳性细菌(如多重耐药肠球菌和葡萄球菌菌株)具有活性。它由10个形成环结构的氨基酸和1个与酰基残基相连的环外氨基酸组成。通过反向遗传方法,鉴定了非核糖体合成抗生素所需的生物合成基因。在非常接近的位置发现了两个基因(glmA和glmB),它们参与了天冬氨酸甲酯的生产,天冬氨酸甲酯是肽核心的氨基酸之一。天冬氨酸甲酯是通过谷氨酸突变酶机制合成的,迄今为止仅在梭状芽胞杆菌中对谷氨酸发酵进行了描述。或ENTEROBACTERIACEAE家族成员:活性酶由两个亚基组成,相应的基因彼此重叠。为了证明异源宿主中的酶活性,必须遗传融合glmA和glmB。所得基因在青霉链霉菌中过表达,融合蛋白以活性形式纯化。为了进行基因破坏诱变,建立了宿主载体系统,其能够对放线放线菌属物种进行基因操作。首次。因此,有可能使生物合成基因靶向失活,并证明了它们参与了氟利米星生物合成。

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