首页> 外文OA文献 >Mutants of Streptomyces clavuligerus with Disruptions in Different Genes for Clavulanic Acid Biosynthesis Produce Large Amounts of Holomycin: Possible Cross-Regulation of Two Unrelated Secondary Metabolic Pathways
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Mutants of Streptomyces clavuligerus with Disruptions in Different Genes for Clavulanic Acid Biosynthesis Produce Large Amounts of Holomycin: Possible Cross-Regulation of Two Unrelated Secondary Metabolic Pathways

机译:克拉维链霉菌的突变与克拉维酸生物合成的不同基因的中断产生大量的holomycin:可能交叉调控的两个不相关的次级代谢途径。

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摘要

A Streptomyces clavuligerus ccaR::aph strain, which has a disruption in the regulatory gene ccaR, does not produce cephamycin C or clavulanic acid, but does produce a bioactive compound that was identified as holomycin by high-performance liquid chromatography (HPLC) and infrared and mass spectrometry. S. clavuligerus strains with disruptions in different genes of the clavulanic acid pathway fall into three groups with respect to holomycin biosynthesis. (i) Mutants with mutations in the early steps of the pathway blocked in the gene ceaS (pyc) (encoding carboxyethylarginine synthase), bls (encoding a β-lactam synthetase), or open reading frame 6 (ORF6; coding for an acetyltransferase of unknown function) are holomycin nonproducers. (ii) Mutants blocked in the regulatory gene ccaR or claR or blocked in the last gene of the pathway encoding clavulanic acid reductase (car) produce holomycin at higher levels than the wild-type strain. (iii) Mutants with disruption in cyp (coding for cytochrome P450), ORF12, and ORF15, genes that appear to be involved in the conversion of clavaminic acid into clavaldehyde or in secretion steps, produce up to 250-fold as much holomycin as the wild-type strain. An assay for holomycin synthetase was developed. This enzyme forms holomycin from holothin by using acetyl coenzyme A as an acetyl group donor. The holomycin synthase activities in the different clavulanic acid mutants correlate well with their production of holomycin.
机译:在调控基因ccaR中有破坏的链霉菌clavuligerus ccaR :: aph菌株不产生头孢霉素C或克拉维酸,但确实产生了一种生物活性化合物,该化合物经高效液相色谱(HPLC)和红外光谱鉴定为holomycin和质谱。就棒霉素的生物合成而言,在克拉维酸途径的不同基因中具有破坏作用的克拉维链球菌菌株可分为三类。 (i)在ceaS(pyc)(编码羧乙基精氨酸合成酶)基因,bls(编码β-内酰胺合成酶)或开放阅读框6(ORF6;编码乙酰基转移酶)的途径的早期阶段发生突变的突变体功能未知)是holomycin的非生产者。 (ii)在调节基因ccaR或claR中封闭或在编码棒酸还原酶(car)的途径的最后一个基因中封闭的突变体产生的Holomycin的水平高于野生型菌株。 (iii)CYP(编码细胞色素P450),ORF12和ORF15破坏的突变体,这些基因似乎参与了克拉维酸转化为克拉维醛的转化或在分泌步骤中产生,其产生的霍洛霉素的数量最多为250倍。野生型菌株。开发了一种全息霉素合成酶的测定法。该酶通过使用乙酰辅酶A作为乙酰基供体,从冬青素中形成全息霉素。在不同的克拉维酸突变体中,全息霉素合酶的活性与其产生的全息霉素密切相关。

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