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Analyses of the acetate-producing pathways in Corynebacterium glutamicum under oxygen-deprived conditions

机译:缺氧条件下谷氨酸棒杆菌中乙酸产生途径的分析

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Corynebacterium glutamicum R efficiently produces valuable chemicals from glucose under oxygen-deprived conditions. In an effort to reduce acetate as a byproduct, acetate productivity of several mutant-disrupted genes encoding possible key enzymes for acetate formation was determined. Disruption of the aceE gene that encodes the E1 enzyme of the pyruvate dehydrogenase complex resulted in almost complete elimination of acetate formation under oxygen-deprived conditions, implying that acetate synthesis under these conditions was essentially via acetylcoenzyme A (CoA). Simultaneous disruption of pta, encoding phosphotransacetylase, and ack, encoding acetate kinase, resulted in no measurable change in acetate productivity. A mutant strain with disruptions in pta, ack and as-yet uncharacterized gene (cgR2472) exhibited 65% reduced acetate productivity compared to the parental strain, although a single disruption of cgR2472 exhibited no effect on acetate productivity. The gene cgR2472 was shown to encode a CoA-transferase (CTF) that catalyzes the formation of acetate from acetyl-CoA. These results indicate that PTA-ACK as well as CTF is involved in acetate production in C. glutamicum. This study provided basic information to reduce acetate production under oxygen-deprived conditions.
机译:谷氨酸棒杆菌R在缺氧条件下有效地从葡萄糖中产生有价值的化学物质。为了减少乙酸盐的副产物,测定了几种可能破坏编码乙酸盐形成的关键酶的突变破坏基因的乙酸盐生产率。丙酮酸脱氢酶复合物的E1酶编码aceE基因的破坏导致在缺氧条件下几乎完全消除了乙酸盐的形成,这意味着在这些条件下乙酸盐的合成基本上是通过乙酰辅酶A(CoA)进行的。编码磷酸转乙酰酶的pta和编码乙酸激酶的ack的同时破坏,导致乙酸生产力没有可测量的变化。与单亲性菌株相比,pta,ack和迄今未鉴定的基因(cgR2472)发生破坏的突变菌株显示乙酸盐产率降低了65%,尽管cgR2472的单次破坏对乙酸盐生产率没有影响。已显示基因cgR2472编码CoA转移酶(CTF),该酶催化从乙酰CoA形成乙酸盐。这些结果表明,PTA-ACK以及CTF都参与谷氨酸棒杆菌的乙酸生产。这项研究提供了减少缺氧条件下减少乙酸盐产生的基本信息。

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