首页> 外文期刊>Journal of industrial microbiology & biotechnology >Microbial transformation of ferulic acid to vanillic acid by Streptomyces sannanensis MTCC 6637.
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Microbial transformation of ferulic acid to vanillic acid by Streptomyces sannanensis MTCC 6637.

机译:山南链霉菌MTCC 6637将阿魏酸微生物转化为香草酸。

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Streptomyces sannanensis MTCC 6637 was examined for its potentiality to transform ferulic acid into its corresponding hydroxybenzoate-derivatives. Cultures of S. sannanensis when grown on minimal medium containing ferulic acid as sole carbon source, vanillic acid accumulation was observed in the medium as the major biotransformed product along with transient formation of vanillin. A maximum amount of 400 mg/l vanillic acid accumulation was observed, when cultures were grown on 5 mM ferulic acid at 28 degrees C. This accumulation of vanillic acid was found to be stable in the culture media for a long period of time, thus facilitating its recovery. Purification of vanillic acid was achieved by gel filtration chromatography using SephadexTM LH-20 matrix. Catabolic route of ferulic acid biotransformation by S. sannanensis has also been demonstrated. The metabolic inhibitor experiment [by supplementation of 3,4 methylenedioxy-cinnamic acid (MDCA), a metabolic inhibitor of phenylpropanoid enzyme 4-hydroxycinnamoyl-CoA ligase (4-CL) along with ferulic acid] suggested that biotransformation of ferulic acid into vanillic acid mainly proceeds via CoA-dependent route. In vitro conversions of ferulic acid to vanillin, vanillic acid and vanillin to vanillic acid were also demonstrated with cell extract of S. sannanensis. Further degradation of vanillic acid to other intermediates such as, protocatechuic acid and guaiacol was not observed, which was also confirmed in vitro with cell extract..
机译:检查了南链链霉菌MTCC 6637将阿魏酸转化为其相应的羟基苯甲酸酯衍生物的潜力。当在含有阿魏酸作为唯一碳源的基本培养基上生长时,山南沙门氏菌的培养物在培养基中观察到香草酸积累,这是主要的生物转化产物,同时短暂地形成了香草醛。当培养物在28°C的5 mM阿魏酸上生长时,观察到最大400 mg / l的香草酸积聚。发现这种香草酸积聚在培养基中长期稳定,因此促进其恢复。通过使用SephadexTM LH-20基质的凝胶过滤色谱法纯化香草酸。也已经证明了山南链霉菌对阿魏酸进行生物转化的分解代谢途径。代谢抑制剂实验[通过添加3,4亚甲二氧基肉桂酸(MDCA),苯基丙烷酶4-羟基肉桂酰辅酶A连接酶(4-CL)的代谢抑制剂和阿魏酸]提示,阿魏酸可生物转化为香草酸主要通过依赖CoA的途径进行。用山梨链球菌的细胞提取物也证明了阿魏酸向香草醛的体外转化,香草酸和香草醛向香草酸的转化。未观察到香草酸进一步降解为其他中间体,如原儿茶酸和愈创木酚,这在体外也已用细胞提取物证实。

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