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首页> 外文期刊>Applied and Environmental Microbiology >A Single Ala139-to-Glu Substitution in the Renibacterium salmoninarum Virulence-Associated Protein p57 Results in Antigenic Variation and Is Associated with Enhanced p57 Binding to Chinook Salmon Leukocytes
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A Single Ala139-to-Glu Substitution in the Renibacterium salmoninarum Virulence-Associated Protein p57 Results in Antigenic Variation and Is Associated with Enhanced p57 Binding to Chinook Salmon Leukocytes

机译:沙门氏菌肾炎毒力相关蛋白p57中的单个Ala139到Glu替代导致抗原变异,并与增强的p57与奇努克鲑鱼白细胞的结合相关。

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The gram-positive bacterium Renibacterium salmoninarum produces relatively large amounts of a 57-kDa protein (p57) implicated in the pathogenesis of salmonid bacterial kidney disease. Antigenic variation in p57 was identified by using monoclonal antibody 4C11, which exhibited severely decreased binding to R. salmoninarum strain 684 p57 and bound robustly to the p57 proteins of seven other R. salmoninarum strains. This difference in binding was not due to alterations in p57 synthesis, secretion, or bacterial cell association. The molecular basis of the 4C11 epitope loss was determined by amplifying and sequencing the two identical genes encoding p57, msa1 and msa2. The 5′ and coding sequences of the 684 msa1 and msa2 genes were identical to those of the ATCC 33209 msa1 and msa2 genes except for a single C-to-A nucleotide mutation. This mutation was identified in both the msa1 and msa2 genes of strain 684 and resulted in an Ala139-to-Glu substitution in the amino-terminal region of p57. We examined whether this mutation in p57 altered salmonid leukocyte and rabbit erythrocyte binding activities. R. salmoninarum strain 684 extracellular protein exhibited a twofold increase in agglutinating activity for chinook salmon leukocytes and rabbit erythrocytes compared to the activity of the ATCC 33209 extracellular protein. A specific and quantitative p57 binding assay confirmed the increased binding activity of 684 p57. Monoclonal antibody 4C11 blocked the agglutinating activity of the ATCC 33209 extracellular protein but not the agglutinating activity of the 684 extracellular protein. These results indicate that the Ala139-to-Glu substitution altered immune recognition and was associated with enhanced biological activity of R. salmoninarum 684 p57.
机译:革兰氏阳性细菌沙门氏菌产生相对大量的57 kDa蛋白(p57),与鲑鱼细菌性肾病的发病机理有关。通过使用单克隆抗体4C11鉴定了p57的抗原变异,该抗体表现出与沙门氏菌684株p57的结合严重降低,并与其他7株沙门氏菌Rp的p57蛋白牢固结合。这种结合的差异不是由于p57合成,分泌或细菌细胞缔合的改变。通过扩增和测序编码p57的两个相同基因msa1和msa2来确定4C11表位缺失的分子基础。 684个msa1和msa2基因的5'和编码序列与ATCC 33209 msa1和msa2基因的相同,除了一个C-A核苷酸突变。在684株的msa1和msa2基因中都发现了这种突变,并在p57的氨基末端区域导致了Ala139到Glu的取代。我们检查了p57中的这种突变是否改变了鲑鱼白细胞和兔红细胞的结合活性。与ATCC 33209细胞外蛋白的活性相比,沙门氏菌菌株684的细胞外蛋白对奇努克鲑鱼白细胞和兔红细胞的凝集活性提高了两倍。特异性和定量的p57结合测定证实684 p57的结合活性增加。单克隆抗体4C11阻断了ATCC 33209细胞外蛋白的凝集活性,但没有阻断684细胞外蛋白的凝集活性。这些结果表明,Ala139到Glu的取代改变了免疫识别,并与沙门氏菌684 p57的增强的生物活性有关。

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