首页> 外文期刊>Journal of bacteriology >Sequence Diversity and Molecular Evolution of the Heat-Modifiable Outer Membrane Protein Gene (ompA) of Mannheimia(Pasteurella) haemolytica, Mannheimia glucosida, and Pasteurella trehalosi
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Sequence Diversity and Molecular Evolution of the Heat-Modifiable Outer Membrane Protein Gene (ompA) of Mannheimia(Pasteurella) haemolytica, Mannheimia glucosida, and Pasteurella trehalosi

机译:溶血性曼氏疟原虫(Pasteurella),葡萄糖曼氏曼氏菌和海藻巴斯德氏菌的热修饰外膜蛋白基因(ompA)的序列多样性和分子进化

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The OmpA (or heat-modifiable) protein is a major structural component of the outer membranes of gram-negative bacteria. The protein contains eight membrane-traversing β-strands and four surface-exposed loops. The genetic diversity and molecular evolution of OmpA were investigated in 31 Mannheimia (Pasteurella) haemolytica, 6 Mannheimia glucosida, and 4 Pasteurella trehalosi strains by comparative nucleotide sequence analysis. The OmpA proteins of M. haemolytica and M. glucosida contain four hypervariable domains located at the distal ends of the surface-exposed loops. The hypervariable domains of OmpA proteins from bovine and ovine M. haemolytica isolates are very different but are highly conserved among strains from each of these two host species. Fourteen different alleles representing four distinct phylogenetic classes, classes I to IV, were identified in M. haemolytica and M. glucosida. Class I, II, and IV alleles were associated with bovine M. haemolytica, ovine M. haemolytica, and M. glucosida strains, respectively, whereas class III alleles were present in certain M. haemolytica and M. glucosida isolates. Class I and II alleles were associated with divergent lineages of bovine and ovine M. haemolytica strains, respectively, indicating a history of horizontal DNA transfer and assortative (entire gene) recombination. Class III alleles have mosaic structures and were derived by horizontal DNA transfer and intragenic recombination. Our findings suggest that OmpA is under strong selective pressure from the host species and that it plays an important role in host adaptation. It is proposed that the OmpA protein of M. haemolytica acts as a ligand and is involved in binding to specific host cell receptor molecules in cattle and sheep. P. trehalosi expresses two OmpA homologs that are encoded by different tandemly arranged ompA genes. The P. trehalosi ompA genes are highly diverged from those of M. haemolytica and M. glucosida, and evidence is presented to suggest that at least one of these genes was acquired by horizontal DNA transfer.
机译:OmpA(或热可修饰)蛋白是革兰氏阴性细菌外膜的主要结构成分。该蛋白质包含8条跨膜的β链和4条表面暴露的环。研究了31个曼海姆氏菌( Pasteurella haemolytica ,6个 Mannheimia glucosida 中OmpA的遗传多样性和分子进化,比较核苷酸序列分析了4株海藻巴斯德氏菌。 EM的OmpA蛋白。 haemolytica M。葡糖苷包含四个位于表面暴露环远端的高变域。来自牛和绵羊M的OmpA蛋白的高变域。溶血性巴氏杆菌分离株有很大的不同,但是在这两种宿主物种的菌株之间是高度保守的。在 M中鉴定出代表四种不同的系统发育类别(I至IV类)的十四个不同的等位基因。 haemolytica M。葡萄糖苷。 I,II和IV类等位基因与牛 M相关。溶血性,绵羊 M。 haemolytica M。分别是葡糖苷菌株,而某些 M中存在III类等位基因。 haemolytica M。葡糖苷分离株。 I和II类等位基因与牛和绵羊 M的不同谱系有关。分别显示了溶血性血吸虫菌株的水平DNA转移和分类(整个基因)重组的历史。 III类等位基因具有镶嵌结构,并通过水平DNA转移和基因内重组而衍生。我们的发现表明,OmpA在宿主物种的强烈选择压力下,在宿主适应中起着重要作用。提出了 M的OmpA蛋白。 haemolytica 充当配体,参与与牛和绵羊中特定宿主细胞受体分子的结合。 P。 trehalosi 表示两个由不同串联的 ompA 基因编码的OmpA同源物。 P。 trehalosi ompA 基因与 M基因高度不同。 haemolytica M。并提出证据表明这些基因中至少有一个是通过水平DNA转移获得的。

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