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Long-Chain Aldehyde Dehydrogenase That Participates in n-Alkane Utilization and Wax Ester Synthesis in Acinetobacter sp. Strain M-1

机译:不动杆菌中长链醛脱氢酶参与正构烷烃的利用和蜡酯的合成M-1株

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摘要

A long-chain aldehyde dehydrogenase, Ald1, was found in a soluble fraction of Acinetobacter sp. strain M-1 cells grown on n-hexadecane as a sole carbon source. The gene (ald1) was cloned from the chromosomal DNA of the bacterium. The open reading frame of ald1 was 1,512 bp long, corresponding to a protein of 503 amino acid residues (molecular mass, 55,496 Da), and the deduced amino acid sequence showed high similarity to those of various aldehyde dehydrogenases. The ald1 gene was stably expressed in Escherichia coli, and the gene product (recombinant Ald1 [rAld1]) was purified to apparent homogeneity by gel electrophoresis. rAld1 showed enzyme activity toward n-alkanals (C4 to C14), with a preference for longer carbon chains within the tested range; the highest activity was obtained with tetradecanal. The ald1 gene was disrupted by homologous recombination on the Acinetobacter genome. Although the ald1 disruptant (ald1Δ) strain still had the ability to grow on n-hexadecane to some extent, its aldehyde dehydrogenase activity toward n-tetradecanal was reduced to half the level of the wild-type strain. Under nitrogen-limiting conditions, the accumulation of intracellular wax esters in the ald1Δ strain became much lower than that in the wild-type strain. These and other results imply that a soluble long-chain aldehyde dehydrogenase indeed plays important roles both in growth on n-alkane and in wax ester formation in Acinetobacter sp. strain M-1.
机译:在不动杆菌属的可溶性部分中发现了长链醛脱氢酶Ald1。菌株M-1细胞在正十六烷上作为唯一碳源生长。从细菌的染​​色体DNA中克隆了基因(ald1)。 ald1的开放阅读框长1,512 bp,对应503个氨基酸残基的蛋白质(分子量55,496 Da),推导的氨基酸序列与各种醛脱氢酶的相似性高。 ald1基因在大肠杆菌中稳定表达,并通过凝胶电泳将基因产物(重组Ald1 [rAld1])纯化至表观同质。 rAld1对正链烷烃(C4至C14)表现出酶活性,优选在测试范围内较长的碳链;用十四烷获得最高的活性。 ald1基因被不动杆菌基因组上的同源重组破坏。尽管ald1破坏剂(ald1Δ)菌株仍具有在正十六烷上生长的能力,但其对正十四烷的醛脱氢酶活性降低到野生型菌株的一半。在氮限制条件下,ald1Δ菌株中细胞内蜡酯的积累变得比野生型菌株中的低得多。这些和其他结果表明,可溶性长链醛脱氢酶确实在不动杆菌中正链烷烃的生长和蜡酯的形成中都起着重要作用。菌株M-1。

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