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Catabolism of mannitol in Lactococcus lactis MG1363 and a mutant defective in lactate dehydrogenase

机译:乳球菌乳酸盐乳杆菌Mg1363中甘露醇的分解代谢及乳酸脱氢酶缺陷

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Mannitol metabolism in Lactococcus lactis MG1363 and in a derivative strain deficient in lactate dehydrogenase (LDHd) was characterized. Both strains had the ability to grow on mannitol as an energy source, although this polyol was a poorer substrate for growth than glucose. When compared to glucose, the metabolism of mannitol caused an NADH burden due to formation of an additional NADH molecule at the reaction catalysed by mannitol-1-phosphate dehydrogenase (Mtl1PDH). This resulted in a prominent accumulation of mannitol 1-phosphate (Mtl1P) both in growing and resting cells, suggesting the existence of a severe bottleneck at Mtl1PDH. Growth on mannitol induced the activity of Mtl1PDH in both the LDHd and MG1363 strains. The lower accumulation of Mtl1P in mannitol-grown cells when compared to glucose-grown LDHd cells, as monitored by in vivo13C-NMR, reflects this induction. A clear shift towards the production of ethanol was observed on mannitol, indicating pressure to regenerate NAD+ when this substrate was used. A strategy to obtain a mannitol-overproducing strain is proposed.
机译:特征在于,甘露醇代谢乳酸乳球菌MG1363和衍生菌株缺乏乳酸脱氢酶(LDHD)。两种菌株的能力在甘露醇中生长为能量源,尽管该多元醇是比葡萄糖的生长较差的基底。与葡萄糖相比,甘露醇的代谢导致NADH负荷由于甘露醇-1-磷酸脱氢酶(MTL1PDH)催化的反应形成额外的NADH分子。这导致甘露醇1-磷酸盐(MTL1P)的突出积聚在生长和静止细胞中,表明MTL1PDH的严重瓶颈存在。甘露醇生长诱导LDHD和MG1363菌株中MTL1PDH的活性。与葡萄糖生长的LDHD细胞相比,甘露醇生长细胞中的MTL1p在甘氨酸生长细胞中的较低积聚反映了该诱导。在甘露醇上观察到甘露醇在甘露醇上进行朝向生产乙醇的明显转变,表示当使用该基材时对再生NAD +的压力。提出了获得甘露醇过氧化碳菌株的策略。

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