Heterologous plastoquinone production using a newly identified O2-dependent cyanobacterial hydroxylase.

IF 4.2
Morgane Roger-Margueritat, Margot Beltran, Juliette Schnoebelen, Laura Flandrin, Wafa Rezali, Eline Michel, Sophie S Abby, Fabien Pierrel
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Abstract

Isoprenoid quinones constitute a class of redox lipids that are indispensable for electron transfer in a variety of cellular functions. For instance, plastoquinone, an integral component of plants, algae and Cyanobacteriota, plays a pivotal role in photosynthesis. Isoprenoid quinones are biosynthesised via evolutionary-related pathways, in which some steps are still incompletely characterised. In this study, we confirm the identity of the PlqH enzyme, a flavin-dependent monooxygenase (FMO) conserved in photosynthetic cyanobacteria, which possesses a regioselective hydroxylase activity required for plastoquinone biosynthesis. Phylogenetic analyses demonstrate that cyanobacterial PlqH homologues originated from FMOs involved in bacterial ubiquinone biosynthesis. The synthesis of plastoquinone by Escherichia coli was achieved by expressing two heterologous genes in a genetically engineered strain, which was optimised to produce plastoquinone levels comparable to those of natural ubiquinone. However, plastoquinone was unable to replace ubiquinone in several cellular processes in E. coli, suggesting that fine structural and thermodynamic constraints both play a significant role in the function of quinones.

利用一种新发现的o2依赖性蓝藻羟化酶生产异源质体醌。
类异戊二烯醌是一类氧化还原脂类,是多种细胞功能中电子转移不可或缺的物质。例如,质体醌是植物、藻类和蓝藻的重要组成部分,在光合作用中起着关键作用。类异戊二烯醌是通过进化相关途径生物合成的,其中一些步骤仍未完全表征。在这项研究中,我们确认了PlqH酶的身份,这是一种在光合蓝藻中保守的黄素依赖性单加氧酶(FMO),它具有塑料醌生物合成所需的区域选择性羟化酶活性。系统发育分析表明,蓝藻PlqH同源物起源于参与细菌泛醌生物合成的FMOs。通过在一个基因工程菌株中表达两个外源基因,大肠杆菌合成了塑料醌,并对其进行了优化,使其产生的塑料醌水平与天然泛醌相当。然而,在大肠杆菌的一些细胞过程中,质体醌无法取代泛醌,这表明精细的结构和热力学约束都对醌的功能起着重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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