首页> 外文期刊>Applied and Environmental Microbiology >Knockout of the Erythromycin Biosynthetic Cluster Gene, eryBI, Blocks Isoflavone Glucoside Bioconversion during Erythromycin Fermentations in Aeromicrobium erythreum but Not in Saccharopolyspora erythraea
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Knockout of the Erythromycin Biosynthetic Cluster Gene, eryBI, Blocks Isoflavone Glucoside Bioconversion during Erythromycin Fermentations in Aeromicrobium erythreum but Not in Saccharopolyspora erythraea

机译:敲除红霉素生物合成簇基因eryBI,可阻止红曲菌红霉素发酵过程中异黄酮糖苷的生物转化,但不能抑制红多糖

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Isoflavone glucosides are valuable nutraceutical compounds and are present in commercial fermentations, such as the erythromycin fermentation, as constituents of the soy flour in the growth medium. The purpose of this study was to develop a method for recovery of the isoflavone glucosides as value-added coproducts at the end of either Saccharopolyspora erythraea or Aeromicrobium erythreum fermentation. Because the first step in isoflavone metabolism was known to be the conversion of isoflavone glucosides to aglycones by a β-glucosidase, we chose to knock out the only β-glucosidase gene known at the start of the study, eryBI, to see what effect this had on metabolism of isoflavone glucosides in each organism. In the unicellular erythromycin producer A. erythreum, knockout of eryBI was sufficient to block the conversion of isoflavone glucosides to aglycones. In S. erythraea, knockout of eryBI had no effect on this reaction, suggesting that other β-glucosidases are present. Erythromycin production was not significantly affected in either strain as a result of the eryBI knockout. This study showed that isoflavone metabolism could be blocked in A. erythreum by eryBI knockout but that eryBI knockout was not sufficient to block isoflavone metabolism in S. erythraea.
机译:异黄酮葡糖苷是有价值的营养食品化合物,作为生长培养基中大豆粉的成分存在于商业发酵(如红霉素发酵)中。这项研究的目的是开发一种方法,用于在红多孢菌发酵或红曲菌发酵结束时回收作为增值副产品的异黄酮苷。因为已知异黄酮代谢的第一步是通过β-葡萄糖苷酶将异黄酮葡萄糖苷转化为糖苷,所以我们选择在研究开始时敲除已知的唯一β-葡萄糖苷酶基因eryBI,以了解其作用是什么。在每个生物体中都有异黄酮苷的代谢。在单细胞红霉素生产者A. erythreum中,敲除eryBI足以阻止异黄酮糖苷向糖苷配基的转化。在S. erythraea中,敲除eryBI对该反应没有影响,表明存在其他β-葡萄糖苷酶。由于eryBI敲除,两种菌株中的红霉素生产均未受到明显影响。这项研究表明,通过eryBI敲除可以阻止红曲霉中的异黄酮代谢,但是eryBI敲除不足以阻止S. erythraea中的异黄酮代谢。

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