首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Identification and Elimination of the Competing N-Acetyldiaminopentane Pathway for Improved Production of Diaminopentane by Corynebacterium glutamicum
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Identification and Elimination of the Competing N-Acetyldiaminopentane Pathway for Improved Production of Diaminopentane by Corynebacterium glutamicum

机译:鉴定和消除谷氨酸棒杆菌提高生产二氨基戊烷的竞争性N-乙酰基二氨基戊烷途径

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摘要

The present work describes the development of a superior strain of Corynebacterium glutamicum for diaminopentane (cadaverine) production aimed at the identification and deletion of the underlying unknown N-acetyldiaminopentane pathway. This acetylated product variant, recently discovered, is a highly undesired by-product with respect to carbon yield and product purity. Initial studies with C. glutamicum DAP-3c, a previously derived tailor-made diaminopentane producer, showed that up to 20% of the product occurs in the unfavorable acetylated form. The strain revealed enzymatic activity for diaminopentane acetylation, requiring acetyl-coenzyme A (CoA) as a donor. Comparative transcriptome analysis of DAP-3c and its parent strain did not reveal significant differences in the expression levels of 17 potential candidates annotated as N-acetyltransferases. Targeted single deletion of several of the candidate genes showed NCgl1469 to be the responsible enzyme. NCgl1469 was functionally assigned as diaminopentane acetyltransferase. The deletion strain, designated C. glutamicum DAP-4, exhibited a complete lack of N-acetyldiaminopentane accumulation in medium. Hereby, the yield for diaminopentane increased by 11%. The mutant strain allowed the production of diaminopentane as the sole product. The deletion did not cause any negative growth effects, since the specific growth rate and glucose uptake rate remained unchanged. The identification and elimination of the responsible acetyltransferase gene, as presented here, display key contributions of a superior C. glutamicum strain producing diaminopentane as a future building block for bio-based polyamides.
机译:本工作描述了针对二氨基戊烷(尸胺)生产的谷氨酸棒杆菌优良菌株的开发,该菌株旨在鉴定和删除潜在的未知N-乙酰基二氨基戊烷途径。就碳收率和产物纯度而言,最近发现的这种乙酰化产物变体是非常不希望的副产物。最初使用量身定制的二氨基戊烷生产商谷氨酸棒杆菌DAP-3c的初步研究表明,高达20%的产品以不利的乙酰化形式出现。该菌株显示出对二氨基戊烷乙酰化的酶活性,需要乙酰辅酶A(CoA)作为供体。 DAP-3c及其亲本菌株的转录组比较分析未显示出标注为N-乙酰基转移酶的17种潜在候选蛋白的表达水平存在显着差异。几个候选基因的靶向单缺失显示NCgl1469是负责任的酶。 NCgl1469在功能上被指定为二氨基戊烷乙酰基转移酶。缺失菌株称为谷氨酸棒杆菌DAP-4,在培养基中完全缺乏N-乙酰基二氨基戊烷积累。因此,二氨基戊烷的产率提高了11%。突变菌株允许产生二氨基戊烷作为唯一产物。删除没有引起任何负面的生长影响,因为比生长速率和葡萄糖摄取速率保持不变。如此处所述,负责任的乙酰基转移酶基因的鉴定和消除显示了谷氨酸棒杆菌产生二氨基戊烷的优良菌株的关键作用,该菌株是未来基于生物的聚酰胺的基础。

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