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Conferring the Metabolic Self-Sufficiency of the CAM Plasmid of Pseudomonas putida ATCC 17453: The Key Role of Putidaredoxin Reductase

机译:赋予恶臭假单胞菌ATCC 17453 CAM质粒的代谢自给性:恶臭氧化还原酶还原酶的关键作用

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The relative importance of camphor (CAM) plasmid-coded putidaredoxin reductase (PdR) and the chromosome-coded flavin reductases Frp1, Frp2 and Fred for supplying reduced FMN (FNR) to the enantiocomplementary 2,5- and 3,6-diketocamphane monooxygenases (DKCMOs) that are essential for the growth of Pseudomonas putida ATCC 17453 on ( rac )-camphor was examined. By undertaking studies in the time window prior to the induction of Fred, and selectively inhibiting Frp1 and 2 with Zn 2+ , it was confirmed that PdR could serve as the sole active supplier of FNR to the DKCMOs. This establishes for the first time that the CAM plasmid can function as an autonomous extrachromosomal genetic element able to express all the enzymes and redox factors necessary to ensure entry of the C10 bicyclic terpene into the central pathways of metabolism via isobutyryl-CoA.
机译:樟脑(CAM)质粒编码的氧还蛋白还原酶(PdR)和染色体编码的黄素还原酶Frp1,Frp2和Fred的相对重要性是为对映体互补的2,5-和3,6-二酮庚烷单加氧酶提供还原的FMN(FNR)( DKCMOs)对恶臭假单胞菌ATCC 17453在(rac)樟脑上的生长至关重要。通过在诱发Fred之前的时间窗内进行研究,并选择性地抑制Zn 2+抑制Frp1和2,可以证实PdR可以作为DKCMOs的FNR的唯一活性供应商。这首次确定CAM质粒可作为自主染色体外遗传元件发挥作用,能够表达所有必需的酶和氧化还原因子,以确保C10双环萜烯通过异丁酰-CoA进入新陈代谢的中心路径。

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