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Identification of Concomitant Infection with Chlamydia trachomatis IncA-Negative Mutant and Wild-Type Strains by Genomic, Transcriptional, and Biological Characterizations

机译:通过基因组,转录和生物学特性鉴定沙眼衣原体IncA阴性突变株和野生型菌株的伴随感染

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Clinical isolates of Chlamydia trachomatis that lack IncA on their inclusion membrane form nonfusogenic inclusions and have been associated with milder, subclinical infections in patients. The molecular events associated with the generation of IncA-negative strains and their roles in chlamydial sexually transmitted infections are not clear. We explored the biology of the IncA-negative strains by analyzing their genomic structure, transcription, and growth characteristics in vitro and in vivo in comparison with IncA-positive C. trachomatis strains. Three clinical samples were identified that contained a mixture of IncA-positive and -negative same-serovar C. trachomatis populations, and two more such pairs were found in serial isolates from persistently infected individuals. Genomic sequence analysis of individual strains from each of two serovar-matched pairs showed that these pairs were very similar genetically. In contrast, the genome sequence of an unmatched IncA-negative strain contained over 5,000 nucleotide polymorphisms relative to the genome sequence of a serovar-matched but otherwise unlinked strain. Transcriptional analysis, in vitro culture kinetics, and animal modeling demonstrated that IncA-negative strains isolated in the presence of a serovar-matched wild-type strain are phenotypically more similar to the wild-type strain than are IncA-negative strains isolated in the absence of a serovar-matched wild-type strain. These studies support a model suggesting that a change from an IncA-positive strain to the previously described IncA-negative phenotype may involve multiple steps, the first of which involves a translational inactivation of incA, associated with subsequent unidentified steps that lead to the observed decrease in transcript level, differences in growth rate, and differences in mouse infectivity.
机译:沙眼衣原体的临床分离株在其包膜上缺乏IncA,形成非融合性包涵体,并与患者的轻度亚临床感染有关。目前尚不清楚与IncA阴性菌株的产生相关的分子事件及其在衣原体性传播感染中的作用。我们通过分析IncA阴性菌株的基因组结构,转录和与IncA阳性 C相比的体内和体外生长特性,探索了其生物学特性。沙眼菌菌株。确定了三个临床样本,其中包含IncA阳性和阴性相同血清型 C的混合物。沙眼衣原体种群,在来自持续感染个体的系列分离物中还发现了另外两个这样的对。来自两个血清型匹配对的每对的个别菌株的基因组序列分析表明,这些对在遗传上非常相似。相反,相对于血清型匹配但未连接的菌株,基因组序列的不匹配的IncA阴性菌株包含超过5,000个核苷酸多态性。转录分析,体外培养动力学和动物模型表明,与血清型匹配的野生型菌株相比,在血清型匹配的野生型菌株存在下分离的IncA阴性菌株在表型上比在不存在的情况下分离的IncA阴性菌株更相似。血清型匹配的野生型菌株。这些研究支持一个模型,表明从IncA阳性菌株到先前描述的IncA阴性表型的改变可能涉及多个步骤,其中第一步涉及 incA 的翻译失活,并伴随着随后的未知事件步骤导致观察到的转录水平降低,生长速率差异和小鼠感染性差异。

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