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Isolation and Characterization of a Mutant of the Marine Bacterium Alcanivorax borkumensis SK2 Defective in Lipid Biosynthesis

机译:脂质生物合成中缺陷海洋细菌Alcanivorax borkumensis SK2突变体的分离与鉴定

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摘要

In many microorganisms, the key enzyme responsible for catalyzing the last step in triacylglycerol (TAG) and wax ester (WE) biosynthesis is an unspecific acyltransferase which is also referred to as wax ester synthase/acyl coenzyme A (acyl-CoA):diacylglycerol acyltransferase (WS/DGAT; AtfA). The importance and function of two AtfA homologues (AtfA1 and AtfA2) in the biosynthesis of TAGs and WEs in the hydrocarbon-degrading marine bacterium Alcanivorax borkumensis SK2 have been described recently. However, after the disruption of both the AtfA1 and AtfA2 genes, reduced but substantial accumulation of TAGs was still observed, indicating the existence of an alternative TAG biosynthesis pathway. In this study, transposon-induced mutagenesis was applied to an atfA1 atfA2 double mutant to screen for A. borkumensis mutants totally defective in biosynthesis of neutral lipids in order to identify additional enzymes involved in the biosynthesis of these lipids. At the same time, we have searched for a totally TAG-negative mutant in order to study the function of TAGs in A. borkumensis. Thirteen fluorescence-negative mutants were identified on Nile red ONR7a agar plates and analyzed for their abilities to synthesize lipids. Among these, mutant 2 M131 was no longer able to synthesize and accumulate TAGs if pyruvate was used as the sole carbon source. The transposon insertion was localized in a gene encoding a putative cytochrome c family protein (ABO_1185). Growth and TAG accumulation experiments showed that the disruption of this gene resulted in the absence of TAGs in 2 M131 but that growth was not affected. In cells of A. borkumensis SK2 grown on pyruvate as the sole carbon source, TAGs represented about 11% of the dry weight of the cells, while in the mutant 2 M131, TAGs were not detected by thin-layer and gas chromatography analyses. Starvation and lipid mobilization experiments revealed that the lipids play an important role in the survival of the cells. The function of neutral lipids in A. borkumensis SK2 is discussed.
机译:在许多微生物中,负责催化三酰甘油(TAG)和蜡酯(WE)生物合成中最后一步的关键酶是非特异性酰基转移酶,也称为蜡酯合酶/酰基辅酶A(酰基-CoA):二酰基甘油酰基转移酶(WS / DGAT; AtfA)。最近已经描述了两个AtfA同源物(AtfA1和AtfA2)在烃降解海洋细菌bocanumensis SK2中TAG和WEs的生物合成中的重要性和功能。然而,在AtfA1和AtfA2基因均被破坏后,仍然观察到TAG减少但大量积累,表明存在替代的TAG生物合成途径。在这项研究中,将转座子诱导的诱变应用于atfA1 atfA2双重突变体,以筛选在中性脂质的生物合成中完全缺陷的A. borkumensis突变体,以便鉴定参与这些脂质生物合成的其他酶。同时,我们搜索了一个完全TAG阴性的突变体,以研究TAGs在A. borkumensis中的功能。在尼罗河红ONR7a琼脂平板上鉴定了13个荧光阴性突变体,并分析了它们合成脂质的能力。其中,如果丙酮酸用作唯一碳源,则突变体2 M131不再能够合成和积累TAG。转座子插入位于编码假定的细胞色素c家族蛋白(ABO_1185)的基因中。生长和TAG积累实验表明,该基因的破坏导致2 M131中不存在TAG,但生长不受影响。在丙酮酸作为唯一碳源生长的A. borkumensis SK2细胞中,TAG约占细胞干重的11%,而在突变体2 M131中,薄层和气相色谱分析未检测到TAG。饥饿和脂质动员实验表明,脂质在细胞存活中起重要作用。讨论了中性脂质在A. borkumensis SK2中的功能。

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