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产L-丝氨酸谷氨酸棒杆菌的代谢工程改造和代谢流分析被引量:5
2012年
作为胞内一碳单位的主要来源,L-丝氨酸对维持菌体生理代谢具有不可替代的作用,导致其难于实现以糖质为原料的直接发酵法生产.本研究采用系统代谢工程策略,构建了基因工程菌Corynebacterium glutamicum SER-8.连续补料发酵实验显示,SER-8的比生长速率降低,L-丝氨酸的积累量在不同的生长时期呈现变化.代谢流分析证明,过表达3-磷酸甘油酸激酶使糖酵解途径和三羧酸循环增强,过表达脱敏型3-磷酸甘油酸脱氢酶加强了L-丝氨酸合成途径.敲除激活蛋白GlyR部分减弱了L-丝氨酸向甘氨酸的转化,代谢流比率仍有38.2%.实验结果表明,胞内L-丝氨酸的代谢对维持C.glutamicum的生长至关重要,而通过引入GCV裂解系统,分解过量的甘氨酸,同时增加胞内一碳单位的供应将是未来L-丝氨酸代谢工程改造的新靶点.
来书娟张芸刘树文梁勇商秀玲柴欣温廷益
关键词:谷氨酸棒杆菌
Metabolic engineering and flux analysis of Corynebacterium glutamicum for L-serine production被引量:15
2012年
L-Serine plays a critical role as a building block for cell growth, and thus it is difficult to achieve the direct fermentation of L-serine from glucose. In this study, Corynebacterium glutamicum ATCC 13032 was engineered de novo by blocking and attenuating the conversion of L-serine to pyruvate and glycine, releasing the feedback inhibition by L-serine to 3-phosphoglycerate dehydrogenase (PGDH), in combination with the co-expression of 3-phosphoglycerate kinase (PGK) and feedback-resistant PGDH (PGDHr). The resulting strain, SER-8, exhibited a lower specific growth rate and significant differences in L-serine levels from Phase I to Phase V as determined for fed-batch fermentation. The intracellular L-serine pool reached (14.22±1.41) μmol gCDM 1, which was higher than glycine pool, contrary to fermentation with the wild-type strain. Furthermore, metabolic flux analysis demonstrated that the over-expression of PGK directed the flux of the pentose phosphate pathway (PPP) towards the glycolysis pathway (EMP), and the expression of PGDHr improved the L-serine biosynthesis pathway. In addition, the flux from L-serine to glycine dropped by 24%, indicating that the deletion of the activator GlyR resulted in down-regulation of serine hydroxymethyltransferase (SHMT) expression. Taken together, our findings imply that L-serine pool management is fundamental for sustaining the viability of C. glutamicum, and improvement of C1 units generation by introducing the glycine cleavage system (GCV) to degrade the excessive glycine is a promising target for L-serine production in C. glutamicum.
LAI ShuJuanZHANG YunLIU ShuWenLIANG YongSHANG XiuLingCHAI XinWEN TingYi
关键词:代谢通量分析L-丝氨酸甘氨酸受体补料分批发酵
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