首页> 外文期刊>Enzyme and Microbial Technology >Optimization of ribosomal binding site sequences for gene expression and 4-hydroxyisoleucine biosynthesis in recombinant corynebacterium glutamicum
【24h】

Optimization of ribosomal binding site sequences for gene expression and 4-hydroxyisoleucine biosynthesis in recombinant corynebacterium glutamicum

机译:重组棒状杆菌基因表达和4-羟基氨基生物合成的核糖体结合位点序列的优化

获取原文
获取原文并翻译 | 示例
           

摘要

4-Hydroxyisoleucine (4-HIL) has potential value for treating diabetes. alpha-Ketoglutarate (alpha-KG)-dependent alpha-isoleucine dioxygenase (IDO) can convert L-isoleucine (Ile) into 4-HIL. In our previous study, 4-HIL was de novo synthesized from glucose by expressing the ido gene in Corynebacterium glutamicum strain SN01, an Ile producer, and neither Ile nor alpha-KG was added. In this study, ribosomal binding site (RBS) engineering was applied for gene expression and 4-HIL biosynthesis in C. glutamicum. The 18 tested RBS sequences showed greatly differing strengths for expressing ido, and 8.10-104.22 mM 4-HIL was produced. To supply the cosubstrate alpha-KG at different levels, the odhI gene was then expressed using the RBS sequences of high, medium, and low strength in the above mentioned optimal strain SF01 carrying R8-ido. However, 4-HIL production decreased to varying amounts, and in some strains, the alpha-KG was redirected into alpha-glutamate synthesis. Next, the O-2 supply was further enhanced in three ido-odhI-coexpressing strains by overexpressing the vgb gene, and 4-HIL production changed dramatically. 4-HIL (up to 119.27 +/- 5.03 mM) was produced in the best strain, SF08, suggesting that the synchronic supply of cosubstrates alpha-KG and O-2 is critical for the high-yield production of 4-HIL. Finally, the avtA gene and the IdhA-pyk2 cluster were deleted separately in SF08 to reduce pyruvate-derived byproducts, and 4-HIL production increased to 122.16 +/- 5.18 and 139.82 +/- 1.56 mM, respectively, indicating that both strains were promising candidates for producing 4-HIL. Therefore, fine-tuning ido expression and the cosubstrates supply through RBS engineering is a useful strategy for improving 4-HIL biosynthesis in C. glutamicum.
机译:4-羟基异氨酸(4-HIL)具有治疗糖尿病的潜在价值。 α-ketoglutarate(alpha-kg) - 依赖性α-异氨酸二氧琥珀酶(Ido)可以将L-异亮氨酸(ILE)转化为4-HIL。在我们以前的研究中,4-HIL通过在糖胺基菌菌株SN01,ILE生产商中表达IDO基因来从葡萄糖中合成DE NOVO,并不加入ILE和α-Kg。在该研究中,核糖体结合位点(RBS)工程用于基因表达和4-HIL生物合成中的C.谷氨酰胺。该18个测试的RBS序列表达了表达IDO的极大不同的强度,并产生了8.10-104.22mm 4-hil。为了在不同水平下提供亚富烷α-kg,然后使用高,培养基和低强度的RBS序列表达ODHI基因,在携带R8-IDO的最佳菌株SFO1中。然而,4-HIL的产量降低到不同的量,并且在一些菌株中,将α-Kg重定向到α-谷氨酸合成中。接下来,通过过表达VGB基因,在三种IDO-ODHI - 共同菌株中进一步增强O-2电源,并且4-HIL产生急剧变化。在最佳菌株SF08中产生4-HIL(高达119.27 +/- 5.03 mm),表明香蒲α-KG和O-2的同步供应对于4-HIL的高产率产生至关重要。最后,在SF08中单独删除AVTA基因和IDHA-PYK2簇,以降低丙酮酸衍生的副产物,4-HIL产量分别增加至122.16 +/- 5.18和139.82 +/- 1.56 mm,表明两个菌株有希望的4-hil的候选人。因此,通过RB Engineering进行微调IDO表达和辅助物供应是改善C.谷氨酰胺的4-HIL生物合成的有用策略。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号