Guillouet S, Rodal A A, An G H, Gorret N, Lessard P A, Sinskey A J
Department of Biology, Massachusetts Institute of Technology, Cambridge 02139, USA.
Appl Microbiol Biotechnol. 2001 Dec;57(5-6):667-73. doi: 10.1007/s00253-001-0829-z.
Carbon destined for lysine synthesis in Corynebacterium glutamicum ATCC 21799 can be diverted toward threonine by overexpression of genes encoding a feedback-insensitive homoserine dehydrogenase (hom(dr)) and homoserine kinase (thrB). We studied the effects of introducing two different threonine dehydratase genes into this threonine-producing system to gauge their effects on isoleucine production. Co-expression of hom(dr), thrB, and ilvA, which encodes a native threonine dehydratase, caused isoleucine to accumulate to a final concentration of 2.2+/-0.2 g l(-1), five-fold more than accumulates in the wild-type strain, and approximately twice as much as accumulates in the strain expressing only hom(dr) and thrB. Comparing these data with previous results, we found that overexpression of the three genes, hom(dr), thrB, and ilvA, in C. glutamicum ATCC 21799 is no better in terms of isoleucine production than the expression of a single gene, tdcB, encoding a catabolic threonine dehydratase from Escherichia coli. Co-expression of hom(dr), thrB, and tdcB, however, caused the concentration of isoleucine to increase 20-fold compared to the wild-type strain, about four times more than the corresponding ilvA-expressing strain. In this system, the apparent yield of isoleucine production was multiplied by a factor of two [2.1 mmol (g dry cell weight)(-1)]. While the balance of excreted metabolites showed that the carbon flow in this strain was completely redirected from the lysine pathway into the isoleucine pathway, it also showed that more pyruvate was diverted into amino acid synthesis.
在谷氨酸棒杆菌ATCC 21799中,用于赖氨酸合成的碳可以通过过表达编码反馈不敏感型高丝氨酸脱氢酶(hom(dr))和高丝氨酸激酶(thrB)的基因而转向苏氨酸合成。我们研究了将两种不同的苏氨酸脱水酶基因引入该苏氨酸生产系统对异亮氨酸产量的影响。共表达hom(dr)、thrB和编码天然苏氨酸脱水酶的ilvA,导致异亮氨酸积累至最终浓度2.2±0.2 g l(-1),比野生型菌株积累量高五倍,约为仅表达hom(dr)和thrB的菌株积累量的两倍。将这些数据与之前的结果进行比较,我们发现,在谷氨酸棒杆菌ATCC 21799中过表达hom(dr)、thrB和ilvA这三个基因,在异亮氨酸生产方面并不比表达单个基因tdcB(编码来自大肠杆菌的分解代谢型苏氨酸脱水酶)更好。然而,共表达hom(dr)、thrB和tdcB,导致异亮氨酸浓度相比野生型菌株增加了20倍,约为相应表达ilvA菌株的四倍。在该系统中,异亮氨酸生产的表观产量增加了两倍[2.1 mmol (g干细胞重量)(-1)]。虽然分泌代谢物的平衡表明该菌株中的碳流完全从赖氨酸途径重新导向异亮氨酸途径,但也表明更多的丙酮酸被转向氨基酸合成。