Appl Environ Microbiol. 1995 Dec;61(12):4315-20. doi: 10.1128/aem.61.12.4315-4320.1995.
The biosynthesis of l-isoleucine proceeds via a highly regulated reaction sequence connected with l-lysine and l-threonine synthesis. Using defined genetic Corynebacterium glutamicum strains characterized by different fluxes through the homoserine dehydrogenase reaction, we analyzed the influence of four different ilvA alleles (encoding threonine dehydratase) in vectors with two different copy numbers on the total flux towards l-isoleucine. For this purpose, 18 different strains were constructed and analyzed. The result was that unlike ilvA in vectors with low copy numbers, ilvA in high-copy-number vectors increased the final l-isoleucine yield by about 20%. An additional 40% increase in l-isoleucine yield was obtained by the use of ilvA alleles encoding feedback-resistant threonine dehydratases. The strain with the highest yield was characterized by three hom(Fbr) copies encoding feedback-resistant homoserine dehydrogenase and ilvA(Fbr) encoding feedback-resistant threonine dehydratase on a multicopy plasmid. It accumulated 96 mM l-isoleucine, without any l-threonine as a by-product. The highest specific productivity was 0.052 g of l-isoleucine per g of biomass per h. This comparative flux analysis of isogenic strains showed that high levels of l-isoleucine formation from glucose can be achieved by the appropriate balance of homoserine dehydrogenase and threonine dehydratase activities in a strain background with feedback-resistant aspartate kinase. However, still-unknown limitations are present within the entire reaction sequence.
L-异亮氨酸的生物合成通过与 L-赖氨酸和 L-苏氨酸合成相关的高度调控反应序列进行。使用通过同型丝氨酸脱氢酶反应具有不同通量的定义遗传 Corynebacterium glutamicum 菌株,我们分析了在两个不同拷贝数的载体中,四个不同的 ilvA 等位基因(编码苏氨酸脱水酶)对总通量到 L-异亮氨酸的影响。为此,构建并分析了 18 种不同的菌株。结果表明,不同于低拷贝数载体中的 ilvA,高拷贝数载体中的 ilvA 将最终 L-异亮氨酸产量提高了约 20%。通过使用编码反馈抗性苏氨酸脱水酶的 ilvA 等位基因,L-异亮氨酸产量额外增加了 40%。具有最高产量的菌株具有三个编码反馈抗性同型丝氨酸脱氢酶的 hom(Fbr)拷贝和编码反馈抗性苏氨酸脱水酶的 ilvA(Fbr),位于多拷贝质粒上。它积累了 96 mM 的 L-异亮氨酸,没有任何 L-苏氨酸作为副产物。最高比生产力为 0.052 g L-异亮氨酸/g 生物质/h。这种同基因菌株的比较通量分析表明,通过在具有反馈抗性天冬氨酸激酶的菌株背景中适当平衡同型丝氨酸脱氢酶和苏氨酸脱水酶的活性,可以从葡萄糖中获得高水平的 L-异亮氨酸形成。然而,在整个反应序列中仍然存在未知的限制。