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Enhancement of Sulfur Conversion Rate in the Production of L-Cysteine by Engineered Escherichia coli

机译:通过工程化大肠杆菌生产L-半胱氨酸的硫转化率的增强

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Cysteine is a commercially important sulfur-containing amino acid widely used as a supplement in the agricultural and food industries. It is extremely desirable to achieve a high sulfur conversion rate in the fermentation-based cysteine production. Here, the metabolic engineering of Escherichia coli was performed to enhance the sulfur conversion rate in cysteine biosynthesis. Accordingly, the reduction of sulfur loss by the regulator decR and its yhaOM operons were deleted. serACB was integrated into chromosome with constitutive promoter to coordinately increase sulfur utilization. The sulfur assimilation pathways and sulfur transcriptional regulator cysB were overexpressed to regulate sulfur metabolism and enhance sulfur conversion significantly. After the process optimization in fed-batch fermentation, LH16 [SLH02 Delta yhaM Ptrc1-serACB-cysM-nrdH-(pLH03, pTrc99a-cysB)] produced 7.5 g/L of cysteine with a sulfur conversion rate of 90.11%. These results indicate that cysteine production by LH16 is a valuable process in the agricultural and food industries.
机译:半胱氨酸是一种商业上重要的含硫氨基酸,广泛用作农业和食品工业的补充。在基于发酵的半胱氨酸产生中获得高硫转化率是非常理想的。这里,进行大肠杆菌的代谢工程,以增强半胱氨酸生物合成中的硫转化率。因此,删除了调节剂的硫损失的降低及其yhaom操纵子。将血清组与组成型启动子整合到染色体中以协调增加硫利用率。硫磺同化途径和硫转录调节剂CYSB过表达以调节硫代谢并显着增强硫转化。在进料分批发酵过程中的过程优化后,LH16 [SLH02 Delta Yham PtrC1-SeracB-Cysm-NRDH-(PLH03,PTRC99A-CYSB)]生产7.5g / L的半胱氨酸,硫转化率为90.11%。这些结果表明,LH16的半胱氨酸产量是农业和食品工业的宝贵过程。

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