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首页> 外文期刊>World Journal of Microbiology & Biotechnology >Effect of biotin on transcription levels of key enzymes and glutamate efflux in glutamate fermentation by Corynebacterium glutamicum
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Effect of biotin on transcription levels of key enzymes and glutamate efflux in glutamate fermentation by Corynebacterium glutamicum

机译:生物素对谷氨酸棒杆菌发酵谷氨酸时关键酶转录水平和谷氨酸外排的影响

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Biotin is an important factor affecting the performance of glutamate fermentation by biotin auxotrophic Corynebacterium glutamicum and glutamate is over-produced only when initial biotin content is controlled at suitable levels or initial biotin is excessive but with Tween 40 addition during fermentation. The transcription levels of key enzymes at pyruvate, isocitrate and alpha-ketoglutarate metabolic nodes, as well as transport protein (TP) of glutamate were investigated under the conditions of varied biotin contents and Tween 40 supplementation. When biotin was insufficient, the genes encoding key enzymes and TP were down-regulated in the early production phase, in particular, the transcription level of isocitrate dehydrogenase (ICDH) which was only 2 % of that of control. Although the cells' morphology transformation and TP level were not affected, low transcription level of ICDH led to lower final glutamate concentration (64 g/L). When biotin was excessive, the transcription levels of key enzymes were at comparable levels as those of control with ICDH as an exception, which was only 3-22 % of control level throughout production phase. In this case, little intracellular glutamate accumulation (1.5 mg/g DCW) and impermeable membrane resulted in non glutamate secretion into broth, even though the quantity of TP was more than 10-folds of control level. Addition of Tween 40 when biotin was excessive stimulated the expression of all key enzymes and TP, intracellular glutamate content was much higher (10-12 mg/g DCW), and final glutamate concentration reached control level (75-80 g/L). Hence, the membrane alteration and TP were indispensable in glutamate secretion. Biotin and Tween 40 influenced the expression level of ICDH and glutamate efflux, thereby influencing glutamate production.
机译:生物素是影响生物素营养缺陷型谷氨酸棒杆菌发酵谷氨酸的性能的重要因素,只有当初始生物素含量控制在适当水平或初始生物素过量但发酵过程中添加吐温40时,谷氨酸才会过量生产。在变化的生物素含量和补充吐温40的条件下,研究了丙酮酸,异柠檬酸和α-酮戊二酸代谢节点上关键酶的转录水平以及谷氨酸的转运蛋白(TP)。当生物素不足时,编码关键酶和TP的基因在生产早期就被下调,特别是异柠檬酸脱氢酶(ICDH)的转录水平仅为对照的2%。尽管不影响细胞的形态转化和TP水平,但ICDH的低转录水平导致最终谷氨酸浓度降低(64 g / L)。当生物素过量时,关键酶的转录水平与对照的水平相当,但ICDH例外,整个生产阶段仅占对照水平的3-22%。在这种情况下,即使TP的量是对照水平的10倍以上,细胞内谷氨酸的积累很少(1.5 mg / g DCW)和不可渗透的膜也导致非谷氨酸分泌到肉汤中。当生物素过量时添加吐温40刺激了所有关键酶和TP的表达,细胞内谷氨酸含量更高(10-12 mg / g DCW),最终谷氨酸浓度达到控制水平(75-80 g / L)。因此,在谷氨酸分泌中膜改变和TP是必不可少的。生物素和吐温40影响ICDH的表达水平和谷氨酸外排,从而影响谷氨酸的产生。

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