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首页> 外文期刊>Journal of bacteriology >Identification of algI and algJ in the Pseudomonas aeruginosa alginate biosynthetic gene cluster which are required for alginate O acetylation.
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Identification of algI and algJ in the Pseudomonas aeruginosa alginate biosynthetic gene cluster which are required for alginate O acetylation.

机译:鉴定铜绿假单胞菌藻酸盐生物合成基因簇中的藻酸O乙酰化所需的algI和algJ。

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摘要

Mucoid strains of Pseudomonas aeruginosa overproduce alginate, a linear exopolysaccharide Of D-mannuronate and variable amounts of L-guluronate. The mannuronate residues undergo modification by C-5 epimerization to form the L-guluronates and by the addition of acetyl groups at the 0-2 and 0-3 positions. Through genetic analysis, we previously identified algF, located upstream of algA in the 18-kb alginate biosynthetic operon, as a gene required for alginate acetylation. Here, we show the sequence of a 3.7-kb fragment containing the open reading frames termed algI, algJ, and algF. An algI::Tn5O1 mutant, which was defective in algIJFA because of the polar nature of the transposon insertion, produced alginate when algA was provided in trans. This indicated that the algIJF gene products were not required for polymer biosynthesis. To examine the potential role of these genes in alginate modification, mutants were constructed by gene replacement in which each gene (algI, algJ, or algF) was replaced by a polar gentamicin resistance cassette. Proton nuclear magnetic resonance spectroscopy showed that polymers produced by strains deficient in algIJF still contained a mixture of D-mannuronate and L-guluronate, indicating that C-5 epimerization was not affected. Alginate acetylation was evaluated by a colorimetric assay and Fourier transform-infrared spectroscopy, and this analysis showed that strains deficient in algIJF produced nonacetylated alginate. Plasmids that supplied the downstream gene products affected by the polar mutations were introduced into each mutant. The strain defective only in algF expression produced an alginate that was not acetylated, confirming previous results. Strains missing only algJ or algI also produced nonacetylated alginates. Providing the respective missing gene (algI, algJ, or algF) in trans restored alginate acetylation. Mutants defective in algI or algJ, obtained by chemical and transposon mutagenesis, were also defective in their ability to acetylate alginate. Therefore, algI and algJ represent newly identified genes that, in addition to algF, are required for alginate acetylation.
机译:铜绿假单胞菌的粘液样菌株过量产生藻酸盐,D-甘露糖醛酸的线性胞外多糖和可变量的L-古洛糖醛酸盐。甘露糖醛酸酯残基通过C-5差向异构化进行修饰以形成L-古洛糖酸酯,并通过在0-2和0-3位置添加乙酰基进行修饰。通过遗传分析,我们先前确定了位于18 kb海藻酸盐生物合成操纵子中algA上游的algF是海藻酸盐乙酰化所需的基因。在这里,我们显示了一个3.7kb片段的序列,其中包含被称为algI,algJ和algF的开放阅读框。由于转座子插入的极性,在algIJFA中有缺陷的algI :: Tn5O1突变体在反式提供algA时产生藻酸盐。这表明聚合物生物合成不需要algIJF基因产物。为了检查这些基因在藻酸盐修饰中的潜在作用,通过基因置换构建了突变体,其中每个基因(algI,algJ或algF)都被极性庆大霉素抗性盒替代。质子核磁共振波谱表明,由缺乏algIJF的菌株产生的聚合物仍含有D-甘露糖醛酸酯和L-古洛糖酸酯的混合物,表明C-5差向异构化不受影响。通过比色测定和傅里叶变换红外光谱法评估藻酸盐的乙酰化,该分析表明缺乏algIJF的菌株产生了非乙酰化藻酸盐。将提供受极性突变影响的下游基因产物的质粒引入每个突变体中。仅在algF表达中有缺陷的菌株产生了未乙酰化的藻酸盐,证实了先前的结果。仅缺少algJ或algI的菌株也产生未乙酰化的藻酸盐。反式提供各自缺失的基因(algI,algJ或algF)可恢复藻酸盐乙酰化作用。通过化学诱变和转座子诱变获得的algI或algJ有缺陷的突变体,其乙酰化藻酸盐的能力也存在缺陷。因此,algI和algJ代表了新鉴定的基因,除algF以外,藻酸盐乙酰化还需要这些基因。

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