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首页> 外文期刊>Applied Microbiology and Biotechnology >Induced heterologous expression of the arginine deiminase pathway promotes growth advantages in the strict anaerobe Acetobacterium woodii
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Induced heterologous expression of the arginine deiminase pathway promotes growth advantages in the strict anaerobe Acetobacterium woodii

机译:诱导的异源源性途径的异源表达促进严格的厌氧醋杆菌木质中的生长优势

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摘要

The advantage of using acetogens such as Acetobacterium woodii as biocatalysts converting the cheap substrate and greenhouse gas carbon dioxide (CO2) into value-added chemicals comes together with the disadvantage of a low overall ATP gain due to the bioenergetics associated with the Wood-Ljungdahl pathway. Expanding the product spectrum of recombinant A. woodii strains to compounds with high ATP-demanding biosynthesis is therefore challenging. As a least invasive strategy for improved ATP generation, the exploitation of the arginine deiminase pathway (ADI) was examined under native conditions and via using heterologously expressed genes in A. woodii. Several promoters were analyzed for application of different gene expression levels in A. woodii using beta-glucuronidase assays. Heterologous expression of the ADI pathway genes from Clostridium autoethanogenum was controlled using either the constitutive pta-ack promoter from Clostridium ljungdahlii or a tightly regulated tetracycline-inducible promoter P-tet. Unlike constitutive expression, only induced expression of the ADI pathway genes led to a 36% higher maximal OD600 when using arginine (OD600 3.4) as nitrogen source and a 52% lower acetate yield per biomass compared to cells growing with yeast extract as nitrogen source (OD600 2.5). In direct comparison, a 69% higher maximal OD600 and about 60% lower acetate yield per biomass in induced to non-induced recombinant A. woodii cells was noticed when using arginine. Our data suggests the application of the ADI pathway in A. woodii for expanding the product spectrum to compounds with high ATP-demanding biosynthesis.
机译:使用醋Etgens(例如醋杆菌)作为生物催化剂将廉价基底和温室气体二氧化碳(CO2)转化为增值化学品的优点与由于与木质Ljungdahl途径相关的生物终端的生物共生学引起的低整体ATP增益的缺点。因此,扩大重组A.伍兹菌株与具有高ATP苛刻的生物合成的化合物的产品谱是挑战性的。作为改进的ATP生成的最小侵入性策略,在天然条件下在天然条件下进行精氨酸脱氨酶途径(ADI)的剥削,并通过在A. Woodii中使用异源表达基因。分析了几种启动子以应用使用β-葡萄糖醛酸酶测定的A. Woodii的不同基因表达水平。使用来自Ljungdahlii的细胞型PTA-ACK启动子或紧密调节的四环素诱导促进剂P-Tet来控制来自梭菌血管生成的异丙梭菌基因的异源表达。与组成型表达不同,当使用精氨酸(OD600 3.4)作为氮源时,仅诱导的ADI途径基因的表达导致了36%的最大OD600,与酵母提取物生长为氮源的细胞( OD600 2.5)。在直接比较中,在诱导非诱导的重组A.使用精氨酸时,在诱导非诱导的重组A中,最大OD600的最大OD600的最大OD600的69%较高和约60%较低的醋酸盐产量。我们的数据表明ADI通路在A. Woodii中的应用扩展到具有高ATP苛刻的生物合成的化合物中的产品谱。

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