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Spontaneous point mutations in the capsule synthesis locus leading to structural and functional changes of the capsule in serogroup A meningococcal populations

机译:胶囊合成基因座中的自发点突变导致血清群A脑膜炎球菌人群的胶囊结构和功能发生变化

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Whole genome sequencing analysis of 100 Neisseria meningitidis serogroup A isolates has revealed that the csaABCD-ctrABCD-ctrEF capsule polysaccharide synthesis locus represents a spontaneous point mutation hotspot. Structural and functional properties of the capsule of 11 carriage and two disease isolates with non-synonymous point mutations or stop codons in capsule synthesis genes were analyzed for their capsular polysaccharide expression, recognition by antibodies and sensitivity to bactericidal killing. Eight of eleven carriage isolates presenting capsule locus mutations expressed no or reduced amounts of capsule. One isolate with a stop codon in the O-acetyltransferase gene expressed non-O-acetylated polysaccharide, and was not recognized by anti-capsule antibodies. Capsule and O-acetylation deficient mutants were resistant to complement deposition and killing mediated by anti-capsular antibodies, but not by anti-lipopolysaccharide antibodies. Two capsule polymerase mutants, one carriage and one case isolate, showed capsule over-expression and increased resistance against bactericidal activity of both capsule- and lipopolysaccharide-specific antibodies. Meningococci have developed multiple strategies for changing capsule expression and structure, which is relevant both for colonization and virulence. Here we show that point mutations in the capsule synthesis genes substantially contribute to the repertoire of genetic mechanisms in natural populations leading to variability in capsule expression.
机译:对100个脑膜炎奈瑟菌血清群A分离株的全基因组测序分析表明,csaABCD-ctrABCD-ctrEF胶囊多糖合成位点代表了自发点突变热点。分析了11个运载蛋白和两种疾病分离物在胶囊合成基因中具有非同义点突变或终止密码子的胶囊的结构和功能特性,以分析它们的荚膜多糖表达,抗体识别和对杀菌作用的敏感性。表现出胶囊基因座突变的11个运输分离株中有8个没有或没有表达胶囊。一种在O-乙酰基转移酶基因中带有终止密码子的分离物表达了非O-乙酰基化的多糖,并且未被抗胶囊抗体识别。胶囊和O-乙酰化不足的突变体对由抗荚膜抗体而非抗脂多糖抗体介导的补体沉积和杀伤具有抗性。两个胶囊聚合酶突变体,一个马车和一个病例分离株,显示出胶囊过表达,并且对胶囊和脂多糖特异抗体的杀菌活性具有更高的抵抗力。脑膜炎球菌已开发出多种改变胶囊表达和结构的策略,这与定植和毒力均相关。在这里,我们表明胶囊合成基因中的点突变实质上有助于自然种群中遗传机制的全集,从而导致胶囊表达的变化。

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