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Metabolic engineering of Corynebacterium glutamicum for efficient production of 5-aminolevulinic acid

机译:谷氨酸棒杆菌的代谢工程可有效生产5-氨基乙酰丙酸

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5-Aminolevulinic acid (5-ALA) has recently attracted attention for its potential applications in the fields of medicine and agriculture. In this study, Corynebacterium glutamicum was firstly engineered for 5-ALA production via the C4 pathway. HemA encoding 5-aminolevulinic acid synthase from Rhodobacter sphaeroides was codon optimized and expressed in C. glutamicum ATCC13032, resulting in accumulation of 5-ALA. Deletion of all known genes responsible for the formation of acetate and lactate further enhanced production of 5-ALA. Overexpression of ppc gene encoding phoenolpyruvate carboxylase resulted in an accumulation of 5-ALA up to 2.06 +/- 0.05g/L. Furthermore, deletion of high-molecular-weight penicillin-binding proteins (HMW-PBPs) genes pbp1a, pbp1b, and pbp2b led to an increase in 5-ALA production of 13.53%, 29.47%, and 22.22%, respectively. Finally, 5-ALA production was enhanced to 3.14 +/- 0.02g/L in shake flask by heterologously expressing rhtA encoding threonine/homoserine exporter, and 86.77% of supplemented glycine was channeled toward 5-ALA production in shake flask. The engineered C. glutamicum ALA7 strain produced 7.53g/L 5-ALA in a 5L bioreactor. This study demonstrated the potential utility of C. glutamicum as a platform for metabolic production of 5-ALA. Change of cell permeability by metabolic engineering HMW-PBPs may provide a new strategy for biochemicals production in Corynebacterium glutamicum. Biotechnol. Bioeng. 2016;113: 1284-1293. (c) 2015 Wiley Periodicals, Inc.
机译:5-氨基乙酰丙酸(5-ALA)最近在医学和农业领域的潜在应用引起了人们的关注。在这项研究中,谷氨酸棒杆菌首先被设计用于通过C4途径产生5-ALA。对来自球形球形红细菌的编码5-氨基乙酰丙酸合酶的HemA进行密码子优化,并在谷氨酸棒杆菌ATCC13032中表达,导致5-ALA的积累。删除负责乙酸盐和乳酸形成的所有已知基因,进一步提高了5-ALA的产量。编码苯丙酮酸丙酮酸羧化酶的ppc基因的过表达导致5-ALA的积累高达2.06 +/- 0.05g / L。此外,删除高分子量青霉素结合蛋白(HMW-PBPs)基因pbp1a,pbp1b和pbp2b导致5-ALA产量分别增加13.53%,29.47%和22.22%。最终,通过异源表达编码苏氨酸/高丝氨酸输出物的rhtA,摇瓶中5-ALA产量提高到3.14 +/- 0.02g / L,补充的86.77%甘氨酸被引导到摇瓶中5-ALA产量。工程谷氨酸棒杆菌ALA7菌株在5L生物反应器中产生了7.53g / L 5-ALA。这项研究表明谷氨酸棒杆菌作为5-ALA代谢产生的平台的潜在实用性。通过代谢工程HMW-PBPs改变细胞通透性可能为谷氨酸棒杆菌中的生化产物生产提供新的策略。生物技术。生恩2016; 113:1284-1293。 (c)2015年威利期刊有限公司

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