磷酸甘油酸烯醇化酶对乳酸乳球菌亚种代谢通量重要性的对照分析。lactis IL1403。

B Koebmann, C Solem, P R Jensen
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引用次数: 15

摘要

糖酵解酶磷酸甘油酸烯醇酶(PGE)在糖酵解过程中催化从2-磷酸甘油酸到磷酸烯醇丙酮酸的步骤。PGE对乳酸乳球菌生长、糖酵解通量及产物形成的对照分析。介绍了lactis IL1403。构建了PGE相对野生型表达量在36% ~ 232%之间的菌株文库。研究了所选菌株在化学定义的培养基中的生长、糖酵解通量和产物形成。在此基础上,计算了PGE对各通量的通量控制系数。在野生型水平上,PGE对生长、糖酵解通量或产物生成没有显著的通量控制,但在PGE活性相对于野生型的36%时,对生长速率的通量控制估计为C(PGE)J(微)约等于0.7,对糖酵解通量C(PGE)J(g)约等于0.8,对乳酸生成C(PGE)J(乳酸)约等于1.3。甲酸地层C(PGE)J(甲酸)近似等于0.5,醋酸地层C(PGE)J(醋酸)近似等于0.25。这些通量控制系数表明,乳酸菌亚种的代谢水平在一定程度上是稳定的。lactis IL1403在PGE活性降低时变得稍微混合酸。对PGE的相对周转估算表明,L. lactis IL1403 PGE的过剩容量可能低至2倍。
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Control analysis of the importance of phosphoglycerate enolase for metabolic fluxes in Lactococcus lactis subsp. lactis IL1403.

The glycolytic enzyme phosphoglycerate enolase (PGE) catalyses the step from 2-phosphoglycerate to phosphoenolpyruvate in glycolysis. A control analysis of PGE on growth, glycolytic flux and product formation in Lactococcus lactis subsp. lactis IL1403 is presented. A library of strains with a modulated expression of PGE from 36 to 232% relative to wildtype level was constructed. Selected strains were studied with respect to growth, glycolytic flux and product formation in a chemically defined medium. On the basis of these data, flux control coefficients of PGE on the respective fluxes were calculated. At wildtype level, PGE was found to have no significant flux control on growth, glycolytic flux or product formation, but at 36% of PGE activity relative to wildtype, the flux control on the growth rate was estimated to be C(PGE)J(micro) approximately equal to 0.7, on the glycolytic flux C(PGE)J(g) approximately equal to 0.8, on lactate formation C(PGE)J(lactate) approximately equal to 1.3, on formate formation C(PGE)J(formate) approximately equal to 0.5 and on acetate formation C(PGE) J(acetate) approximately equal to 0.25. These flux control coefficients show that the metabolism of L. lactis subsp. lactis IL1403 becomes slightly more mixed acid at reduced PGE activities. Estimation of the relative turnover of PGE indicates that excess capacity of PGE in L. lactis IL1403 may be as low as twofold.

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