首页> 外文期刊>Carbohydrate research >The structure of an alternative wall teichoic acid produced by a Lactobacillus plantarum WCFS1 mutant contains a 1,5-linked poly(ribitol phosphate) backbone with 2-α-d-glucosyl substitutions
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The structure of an alternative wall teichoic acid produced by a Lactobacillus plantarum WCFS1 mutant contains a 1,5-linked poly(ribitol phosphate) backbone with 2-α-d-glucosyl substitutions

机译:植物乳杆菌WCFS1突变体产生的另一种壁磷壁酸的结构包含带有2-α-d-葡萄糖基取代的1,5-连接的聚(核糖醇磷酸)主链

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摘要

A tagF1-tagF2 deletion mutant of Lactobacillus plantarum lacks poly(glycerol phosphate) polymerase activity required for glycerol-type wall teichoic acid (WTA) biosynthesis. The mutant activates an alternative genetic locus, tarIJKL, encoding the enzymes for nucleotide activation and incorporation of ribitol in the WTA backbone polymer. This alternative ribitol-type WTA backbone and its repeating unit were isolated and characterized by HPAEC, UPLC-MS, NMR spectroscopy, and MALDI-TOF MS, using synthetic molecules as references. The structure was established as 1,5-linked poly(ribitol phosphate) which was substituted at the C-2 hydroxyl group of the ribitol residue with α-d-glucosyl at a frequency of 28%.
机译:植物乳杆菌的tagF1-tagF2缺失突变体缺乏甘油型壁壁chochochoic acid(WTA)生物合成所需的聚(磷酸甘油)聚合酶活性。该突变体激活了另一种遗传位点tarIJKL,该位点编码用于核苷酸激活和将核糖醇掺入WTA主链聚合物中的酶。使用合成分子作为参考,通过HPAEC,UPLC-MS,NMR光谱和MALDI-TOF MS分离并表征了这种替代的核糖醇型WTA主链及其重复单元。确定该结构为1,5-连接的聚(核糖醇磷酸),其在核糖醇残基的C-2羟基处被α-d-葡萄糖基所取代,频率为28%。

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