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emm and sof gene sequence variation in relation to serological typing of opacity-factor-positive group A streptococci

机译:EMM和SOF基因序列变异与透明度因子阳性群的血清学键入A链球菌

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Approximately 40–60% of group A streptococcal (GAS) isolates are capable of opacifying sera, due to the expression of the sof (serum opacity factor) gene. The emm (M protein gene) and sof 5′ sequences were obtained from a diverse set of GAS reference strains and clinical isolates, and correlated with?M serotyping and anti-opacity-factor testing results. Attempts to amplify sof from strains with?M serotypes or emm types historically associated with the opacity-factor-negative phenotype were negative, except for emm12 strains, which were found to contain a highly conserved sof sequence. There was a strong correlation of certain?M serotypes with specific emm sequences regardless of strain background, and likewise a strong association of specific anti-opacity-factor (AOF) types to sof gene sequence types. In several examples,?M type identity, or partial identity shared between strains with differing emm types, was correlated with short, highly conserved 5′ emm sequences likely to encode M-type-specific epitopes. Additionally, each of three pairs of historically distinct?M type reference strains found to share the same 5′ emm sequence, were also found to share?M serotype specificity. Based upon sof sequence comparisons between strains of the same and of differing AOF types, an approximately 450 residue domain was determined likely to contain key epitopes required for AOF type specificity. Analysis of two Sof sequences that were not highly homologous, yet shared a common AOF type, further implicated a 107 aa portion of this 450-residue domain in putatively containing AOF-specific epitopes. Taken together, the serological data suggest that AOF-specific epitopes for all Sof proteins may reside within a region corresponding to this 107-residue sequence. The presence of specific, hypervariable emm/sof pairs within multiple isolates appears likely to be a reliable indicator of their overall genetic relatedness, and to be very useful for accurate subtyping of GAS isolates by an approach that has relevance to decades of past M-type-based epidemiological data.
机译:由于SOF(血清不透明度因子)基因的表达,大约40-60%的链球菌(气体)分离物能够遮挡血清。从多样的气体参考菌株和临床分离物中获得EMM(M蛋白基因)和SOF 5'序列,并与血清型化和抗透明度态度测试结果相关。除了EMM12菌株外,试图将来自历史与缺陷性因子负表型的血清型或历史相关的EMM类型的菌株放大。发现含有高度保守的SOF序列。某些血清型具有特异性EMM序列的良好相关性,无论应变背景如何,同样是特定抗透明度因子(AOF)类型的强烈关联至SOF基因序列类型。在几个例子中,具有不同EMM类型的菌株之间存在的ΔM型标识或部分身份,可能与可能编码M型特异性表位的短,高度保守的5'MMM序列相关。另外,还发现,发现了三对历史上独特的?M型参考应分享相同的5'MMM序列,以分享血清型特异性。基于SOF序列比较相同的菌株和不同的AOF类型的株,确定了大约450个残基结构域,含有AOF型特异性所需的关键表位。分析两种没有高度同源的SOF序列,但共用常见的AOF型,进一步将该450-残基结构域的107 AA部分含有载体特异性表位。血液数据表明,所有SOF蛋白的AOF特异性表位可能位于与该107-残基序列对应的区域内。多个分离株内的特异性高变EMM / SOF对的存在似乎是其整体遗传相关性的可靠指标,并且对于通过与过去M型数十年的方法准确的气体隔离级别非常有用基于流行病学数据。

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