首页> 外文OA文献 >Amino acid catabolism and antibiotic synthesis: valine is a source of precursors for macrolide biosynthesis in Streptomyces ambofaciens and Streptomyces fradiae.
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Amino acid catabolism and antibiotic synthesis: valine is a source of precursors for macrolide biosynthesis in Streptomyces ambofaciens and Streptomyces fradiae.

机译:氨基酸分解代谢和抗生素合成:缬氨酸是竹链霉菌和弗拉链霉菌中大环内酯生物合成的前体来源。

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摘要

Targeted inactivation of the valine (branched-chain amino acid) dehydrogenase gene (vdh) was used to study the role of valine catabolism in the production of tylosin in Streptomyces fradiae and spiramycin in Streptomyces ambofaciens. The deduced products of the vdh genes, cloned and sequenced from S. fradiae C373.1 and S. ambofaciens ATCC 15154, are approximately 80% identical over all 363 amino acids and 96% identical over a span of the first N-terminal 107 amino acids, respectively, to the deduced product of the Streptomyces coelicolor vdh gene. The organization of the regions flanking the vdh genes is the same in all three species. Inactivation of the genomic copy of the vdh gene in S. fradiae and S. ambofaciens by insertion of a hygromycin resistance (hyg) gene caused loss of the valine dehydrogenase (Vdh) activity, and thus only one enzyme is responsible for the Vdh activity in these organisms. Analysis of the culture broth by bioassay revealed that the vdh::hyg mutants produce an approximately sixfold-lower level of tylosin and an approximately fourfold-lower level of spiramycin than the wild-type S. fradiae and S. ambofaciens strains, while maintaining essentially identical growth in a defined minimal medium with either 25 mM ammonium ion or 0.05% asparagine as the nitrogen source. The addition of the valine catabolite, propionate or isobutyrate, and introduction of the wild-type vdh gene back to each vdh::hyg mutant reversed the negative effect of the vdh::hyg mutation on spiramycin and tylosin production. These data show that the catabolism of valine is a major source of fatty acid precursors for macrolide biosynthesis under defined growth conditions and imply that amino acid catabolism is a vital source of certain antibiotic precursors in actinomycetes.
机译:缬氨酸(支链氨基酸)脱氢酶基因(vdh)的目标失活被用于研究缬氨酸分解代谢在菊苣链霉菌中泰乐菌素和竹链霉菌螺旋霉素生产中的作用。从苦参链球菌C373.1和桑氏链球菌ATCC 15154克隆并测序的vdh基因的推导产物在所有363个氨基酸中大约有80%相同,而在第一个N端107个氨基酸中则有96%相同。酸分别推导至天蓝色链霉菌vdh基因的推导产物。 vdh基因两侧区域的组织在所有三个物种中都是相同的。通过插入潮霉素抗性(hyg)基因使S. fradiae和S. ambofaciens中的vdh基因的基因组拷贝失活导致缬氨酸脱氢酶(Vdh)活性丧失,因此只有一种酶负责这些生物。通过生物分析对培养液进行的分析表明,vdh :: hyg突变体产生的泰乐菌素水平和螺旋霉素的水平比野生型链霉菌和桑博氏链球菌菌株低约六倍,而基本上保持在限定的基本培养基中以25 mM铵离子或0.05%天冬酰胺为氮源的相同生长。添加缬氨酸分解代谢产物,丙酸酯或异丁酸酯,并将野生型vdh基因引入每个vdh :: hyg突变体,可以逆转vdh :: hyg突变对螺旋霉素和泰乐菌素产生的负面影响。这些数据表明,在确定的生长条件下,缬氨酸的分解代谢是大环内酯生物合成的脂肪酸前体的主要来源,并且暗示氨基酸的分解代谢是放线菌中某些抗生素前体的重要来源。

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