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Attenuating L-lysine production by deletion of ddh and lysE and their effect on L-threonine and L-isoleucine production in Corynebacterium glutamicum

机译:通过缺失ddh和lysE来减轻L-赖氨酸的产生及其对谷氨酸棒杆菌中L-苏氨酸和L-异亮氨酸产生的影响

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The fermentative production of L-threonine and L-isoleucine with Corynebacterium glutamicum is usually accompanied by the by-production of L-lysine, which shares partial biosynthesis pathway with L-threonine and L-isoleucine. Since the direct precursor for L-lysine synthesis, diaminopimelate, is a component of peptidoglycan and thus essential for cell wall synthesis, reducing L-lysine by-production could be troublesome. Here, a basal strain with eliminated L-lysine production was constructed from the wild type C. glutamicum ATCC13869 by deleting the chromosomal ddh and lysE. Furthermore, the basal strain as well as the ddh single mutant strain was engineered for L-threonine production by over expressing lysC1, hom1 and thrB, and for L-isoleucine production by over-expressing lysC1, hom1, thrB and ilvA1. Fermentation experiments with the engineered strains showed that (i) deletion of ddh improved L-threonine production by 17%, and additional deletion of lysE further improved L-threonine production by 28%; (ii) deletion of ddh improved L-isoleucine production by 8% and improved cell growth by 21%, whereas additional deletion of lysE had no further influence on both L-isoleucine production and cell growth; (iii) L-lysine by-production was reduced by 95% and 86% in L-threonine and L-isoleucine production, respectively, by deletion of ddh and lysE. This is the first report on improving L-threonine and L-isoleucine production by deleting ddh and lysE in C. glutamicum. The results demonstrate deletion of ddh and lysE as an effective strategy to reduce L-lysine by-production without surrendering the cell growth of C glutamicum. (C) 2016 Elsevier Inc. All rights reserved.
机译:谷氨酸棒杆菌发酵生产L-苏氨酸和L-异亮氨酸通常伴随着L-赖氨酸的副产物,L-赖氨酸与L-苏氨酸和L-异亮氨酸共有部分生物合成途径。由于L-赖氨酸合成的直接前体二氨基庚二酸酯是肽聚糖的组成部分,因此对于细胞壁合成至关重要,因此降低L-赖氨酸副产物的生产可能很麻烦。在此,通过缺失染色体ddh和lysE,从野生型谷氨酸棒杆菌ATCC13869构建了具有消除的L-赖氨酸产生的基础菌株。此外,基础菌株以及ddh单一突变体菌株经过过表达lysC1,hom1和thrB的L-苏氨酸生产,以及过表达lysC1,hom1,thrB和ilvA1的L-异亮氨酸生产。用该工程菌株进行的发酵实验表明:(i)ddh的缺失使L-苏氨酸的产量提高了17%,而lysE的进一步缺失使L-苏氨酸的产量进一步提高了28%; (ii)ddh的缺失将L-异亮氨酸的产生提高了8%,并将细胞的生长提高了21%,而lysE的其他缺失对L-异亮氨酸的产生和细胞的生长均没有进一步的影响; (iii)通过缺失ddh和lysE,L-苏氨酸和L-异亮氨酸生产中的L-赖氨酸副产物分别降低了95%和86%。这是关于通过删除谷氨酸棒杆菌中的ddh和lysE来改善L-苏氨酸和L-异亮氨酸生产的第一份报告。结果表明,ddh和lysE的缺失是减少L-赖氨酸副产物而不降低谷氨酸C细胞生长的有效策略。 (C)2016 Elsevier Inc.保留所有权利。

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