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首页> 外文期刊>Synthetic Biology >Rational engineering of photosynthetic electron flux enhances light-powered cytochrome P450 activity
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Rational engineering of photosynthetic electron flux enhances light-powered cytochrome P450 activity

机译:光合电子通量的合理设计可增强光动力细胞色素P450的活性

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摘要

In this study, we exploited a modified photosynthetic electron transfer chain (PET) in the model cyanobacterium Synechococcus PCC 7002, where electrons derived from water-splitting are used to power reactions catalyzed by a heterologous cytochrome P450 (CYP1A1). A simple in vivo fluorescent assay for CYP1A1 activity was employed to determine the impact of rationally engineering of photosynthetic electron flow. This showed that knocking out a subunit of the type I NADH dehydrogenase complex (NDH-1), suggested to be involved in cyclic photosynthetic electron flow (ΔndhD2), can double the activity of CYP1A1, with a concomitant increase in the flux of electrons from photosynthesis. This also resulted in an increase in cellular adenosine triphosphate (ATP) and the ATPicotinamide adenine dinucleotide phosphate (NADPH) ratio, suggesting that expression of a heterologous electron sink in photosynthetic organisms can be used to modify the bioenergetic landscape of the cell. We therefore demonstrate that CYP1A1 is limited by electron supply and that photosynthesis can be re-engineered to increase heterologous P450 activity for the production of high-value bioproducts. The increase in cellular ATP achieved could be harnessed to support metabolically demanding heterologous processes. Furthermore, this experimental system could provide valuable insights into the mechanisms of photosynthesis.
机译:在这项研究中,我们在模型蓝藻Synechococcus PCC 7002中利用了修饰的光合作用电子转移链(PET),其中利用水分解产生的电子来驱动异源细胞色素P450(CYP1A1)催化的反应。使用一种简单的体内CYP1A1活性荧光测定法来确定合理设计光合电子流的影响。这表明敲除I型NADH脱氢酶复合物(NDH-1)的一个亚基(建议参与循环光合电子流(ΔndhD2))可使CYP1A1的活性增加一倍,同时电子通量也随之增加光合作用。这也导致细胞三磷酸腺苷(ATP)和ATP /烟酰胺腺嘌呤二核苷酸磷酸(NADPH)比率的增加,表明光合生物中异源电子库的表达可用于修饰细胞的生物能态。因此,我们证明了CYP1A1受电子供应的限制,并且光合作用可以被重新设计以增加用于生产高价值生物产品的异源P450活性。可以实现细胞ATP的增加,以支持需要代谢的异源过程。此外,该实验系统可以为光合作用机制提供有价值的见解。

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