首页> 外文期刊>Molecular Microbiology >Molecular and functional analysis of the lipopolysaccharide biosynthesis locus wlb from Bordetella pertussis, Bordetella parapertussis and Bordetella bronchiseptica.
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Molecular and functional analysis of the lipopolysaccharide biosynthesis locus wlb from Bordetella pertussis, Bordetella parapertussis and Bordetella bronchiseptica.

机译:百日咳博德特氏菌,副百日咳博德特氏菌和支气管败血性博德特氏菌脂多糖生物合成基因座wlb的分子和功能分析。

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摘要

The Bordetella pertussis wlb locus (wlbpe, formerly bpl) is required for the biosynthesis of a trisaccharide that, when attached to the B. pertussis lipopolysaccharide (LPS) core (band B), generates band A LPS. The equivalent loci in Bordetella bronchiseptica (wlbbr) and Bordetella parapertussis (wlbpa) were identified and cloned. The wlbbr and wlbpa loci differ from wlbpe in that they lack the insertion sequence that defines the right-hand terminus of wlbpe. Deletion of 12 kb of DNA containing the whole wlb locus (delta wlb) by allelic exchange in each of the three bordetellae had no effect on band B biosynthesis, whereas band A biosynthesis was prevented in B. pertussis and B. bronchiseptica. In B. bronchiseptica and B. parapertussis, delta wlb mutants also lacked O-antigen. Reintroduction of the wlbpe or wlbbr loci on a shuttle vector into the three delta wlb mutants restored the wild-type LPS phenotype in the B. pertussis and B. bronchiseptica mutants. In the case of B. parapertussis, which normally does not synthesize an apparent band A structure, introduction of the wlbpe or wlbbr loci now enabled the generation of band A. This suggests that the attachment point for band A trisaccharide on the LPS core is present in B. parapertussis, and further suggests that the wild-type wlbpa locus is not fully functional. Introduction of the wlbpa locus into the delta wlbpe, delta wlbbr and delta wlbpa mutants had interesting consequences. The B. bronchiseptica and B. parapertussis recipients were now able to biosynthesize O-antigen, but no band A was generated. In the B. pertussis recipient, a truncated band A was expressed consistent with a mutation in the wlbH gene, but on Western blotting the expression of a small amount of full-length band A was also seen. Evidence that the wlbHpa protein is not fully functional was provided by the failure of the wlbpa locus to fully complement a B. pertussis wlbH (delta wlbHpe) mutant. This was supported by DNA sequence data showing that a single amino acid, conserved between homologous proteins from a range of bacteria, is altered in the B. parapertussis WlbH protein.
机译:百日咳博德特氏菌wlb基因座(wlbpe,以前为bpl)是三糖生物合成所必需的,三糖连接到百日咳博德特氏菌脂多糖(LPS)核心(带B)时,产生带A LPS。鉴定并克隆了支气管博德氏杆菌(wlbbr)和副百日咳博德氏杆菌(wlbpa)中的等价基因座。 wlbbr和wlbpa基因座与wlbpe的不同之处在于,它们缺少定义wlbpe右端的插入序列。通过三个等位基因交换中的等位基因交换,删除了包含整个wlb基因座(δwlb)的12 kb DNA对B带的生物合成没有影响,而百日咳博德特氏菌和支气管败血性芽孢杆菌却阻止了A带的生物合成。在支气管败血性博德特氏菌和副百日咳博德特氏菌中,Δwlb突变体也缺乏O-抗原。将穿梭载体上的wlbpe或wlbbr基因座重新引入到三个delta wlb突变体中,恢复了百日咳博德特氏菌和支气管败血性博德特氏菌突变体的野生型LPS表型。对于通常不合成表带A结构的百日咳博德特氏菌,现在引入wlbpe或wlbbr基因座即可生成带A。这表明在LPS核心上存在带A三糖的附着点在百日咳博德特氏菌中,进一步表明野生型wlbpa基因座不能完全发挥功能。将wlbpa基因座引入delta wlbpe,delta wlbbr和delta wlbpa突变体产生了有趣的结果。支气管炎双歧杆菌和副百日咳博德特氏菌接受者现在能够生物合成O抗原,但没有产生条带。在百日咳博德特氏菌接受者中,截短的条带A被表达出与wlbH基因中的突变一致,但是在蛋白质印迹法中也观察到少量的全长条带A的表达。 wlbpa基因座无法完全互补百日咳博德特氏菌wlbH(delta wlbHpe)突变体,从而提供了wlbHpa蛋白功能不完全的证据。 DNA序列数据证明了这一点,该数据表明,在一系列细菌的同源蛋白之间保守的单个氨基酸在百日咳博德特氏菌WlbH蛋白中发生了改变。

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