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Fatty Alcohols for Wax Esters in Marinobacter aquaeolei VT8: Two Optional Routes in the Wax Biosynthesis Pathway

机译:水下Marinobacter quaeolei VT8中用于蜡酯的脂肪醇:蜡生物合成途径中的两个可选途径

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摘要

The biosynthesis of wax esters in bacteria is accomplished by a unique pathway that combines a fatty alcohol and a fatty acyl coenzyme A substrate. Previous in vitro enzymatic studies indicated that two different enzymes could be involved in the synthesis of the required fatty alcohol in Marinobacter aquaeolei VT8. In this study, we demonstrate through a series of gene deletions and transcriptional analysis that either enzyme is capable of fulfilling the role of providing the fatty alcohol required for wax ester biosynthesis in vivo, but evolution has clearly selected one of these, a previously characterized fatty aldehyde reductase, as the preferred enzyme to perform this reaction under typical wax ester-accumulating conditions. These results complement previous in vitro studies and provide the first glimpse into the role of each enzyme in vivo in the native organism.
机译:细菌中蜡酯的生物合成通过结合脂肪醇和脂肪酰基辅酶A底物的独特途径完成。先前的体外酶研究表明,两种不同的酶可能参与了水生海洋杆菌VT8中所需脂肪醇的合成。在这项研究中,我们通过一系列的基因缺失和转录分析证明,任一种酶都能够履行提供蜡酯生物体内合成所需的脂肪醇的作用,但是进化清楚地选择了其中一种,即以前表征的脂肪醛还原酶,作为在典型的蜡酯积累条件下进行该反应的优选酶。这些结果补充了先前的体外研究,并首次揭示了每种酶在天然生物体内的作用。

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