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Reengineering of a Corynebacterium glutamicum l-Arginine and l-Citrulline Producer▿

机译:谷氨酸棒杆菌L-精氨酸和L-瓜氨酸生产商的改造

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摘要

Toward the creation of a robust and efficient producer of l-arginine and l-citrulline (arginine/citrulline), we have performed reengineering of a Corynebacterium glutamicum strain by using genetic information of three classical producers. Sequence analysis of their arg operons identified three point mutations (argR123, argG92up, and argG45) in one producer and one point mutation (argB26 or argB31) in each of the other two producers. Reconstitution of the former three mutations or of each argB mutation on a wild-type genome led to no production. Combined introduction of argB26 or argB31 with argR123 into a wild type gave rise to arginine/citrulline production. When argR123 was replaced by an argR-deleted mutation (ΔargR), the production was further increased. The best mutation set, ΔargR and argB26, was used to screen for the highest productivity in the backgrounds of different wild-type strains of C. glutamicum. This yielded a robust producer, RB, but the production was still one-third of that of the best classical producer. Transcriptome analysis revealed that the arg operon of the classical producer was much more highly upregulated than that of strain RB. Introduction of leuC456, a mutation derived from a classical l-lysine producer and provoking global induction of the amino acid biosynthesis genes, including the arg operon, into strain RB led to increased production but incurred retarded fermentation. On the other hand, replacement of the chromosomal argB by heterologous Escherichia coli argB, natively insensitive to arginine, caused a threefold-increased production without retardation, revealing that the limitation in strain RB was the activity of the argB product. To overcome this, in addition to argB26, the argB31 mutation was introduced into strain RB, which caused higher deregulation of the enzyme and resulted in dramatically increased production, like the strain with E. coli argB. This reconstructed strain displayed an enhanced performance, thus allowing significantly higher productivity of arginine/citrulline even at the suboptimal 38°C.
机译:为了创建一个强大而高效的L-精氨酸和L-瓜氨酸生产商(精氨酸/瓜氨酸),我们通过利用三个经典生产商的遗传信息对谷氨酸棒杆菌进行了改造。他们的arg操纵子的序列分析确定了一个生产者中的三个点突变(argR123,argG92up和argG45)和其他两个生产者中的一个点突变(argB26或argB31)。在野生型基因组上重组前三个突变或每个argB突变均未产生。将argB26或argB31与argR123联合引入野生型产生了精氨酸/瓜氨酸生产。当用argR缺失突变(ΔargR)替代argR123时,产量进一步增加。最佳突变集ΔargR和argB26用于筛选不同野生型谷氨酸棒杆菌菌株背景中的最高生产力。这样就产生了一个强大的生产者RB,但是产量仍然是最好的古典生产者的三分之一。转录组分析表明,与RB菌株相比,经典生产者的arg操纵子上调程度更高。将leuC456(一种源自经典l-赖氨酸生产商的突变)引入到RB菌株中,引发了对包括arg操纵子在内的氨基酸生物合成基因的整体诱导,导致产量增加,但导致发酵延迟。另一方面,用天然对精氨酸不敏感的异源大肠杆菌argB替代染色体argB,导致产量增加了三倍,而没有阻滞作用,这表明RB菌株的局限性是argB产品的活性。为了克服这个问题,除了argB26之外,还向菌株RB中引入了argB31突变,这导致了酶的高度失调,并导致了产量的急剧增加,就像带有大肠杆菌argB的菌株一样。这种重建的菌株显示出增强的性能,因此即使在次优38°C下也能显着提高精氨酸/瓜氨酸的生产率。

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