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Gene Expression Profiles of Chlamydophilapneumoniae during the Developmental Cycle and Iron Depletion–Mediated Persistence

机译:嗜衣藻的基因表达谱肺炎在发展周期和铁耗竭介导的持久性中

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摘要

The obligate intracellular, gram-negative bacterium Chlamydophila pneumoniae (Cpn) has impact as a human pathogen. Little is known about changes in the Cpn transcriptome during its biphasic developmental cycle (the acute infection) and persistence. The latter stage has been linked to chronic diseases. To analyze Cpn CWL029 gene expression, we designed a pathogen-specific oligo microarray and optimized the extraction method for pathogen RNA. Throughout the acute infection, ratio expression profiles for each gene were generated using 48 h post infection as a reference. Based on these profiles, significantly expressed genes were separated into 12 expression clusters using self-organizing map clustering and manual sorting into the “early”, “mid”, “late”, and “tardy” cluster classes. The latter two were differentiated because the “tardy” class showed steadily increasing expression at the end of the cycle. The transcriptome of the Cpn elementary body (EB) and published EB proteomics data were compared to the cluster profile of the acute infection. We found an intriguing association between “late” genes and genes coding for EB proteins, whereas “tardy” genes were mainly associated with genes coding for EB mRNA. It has been published that iron depletion leads to Cpn persistence. We compared the gene expression profiles during iron depletion–mediated persistence with the expression clusters of the acute infection. This led to the finding that establishment of iron depletion–mediated persistence is more likely a mid-cycle arrest in development rather than a completely distinct gene expression pattern. Here, we describe the Cpn transcriptome during the acute infection, differentiating “late” genes, which correlate to EB proteins, and “tardy” genes, which lead to EB mRNA. Expression profiles during iron mediated–persistence led us to propose the hypothesis that the transcriptomic “clock” is arrested during acute mid-cycle.
机译:专性细胞内革兰氏阴性细菌肺炎衣原体(Cpn)作为人类病原体具有影响。关于Cpn转录组在其双相发育周期(急性感染)和持续过程中的变化知之甚少。后一阶段与慢性疾病有关。为了分析Cpn CWL029基因的表达,我们设计了一种病原体特异性寡核苷酸微阵列,并优化了病原体RNA的提取方法。在整个急性感染中,使用感染后48小时作为参考,生成每个基因的比例表达谱。基于这些图谱,使用自组织图谱聚类和手动分类到“早期”,“中”,“晚期”和“迟缓”聚类类别,将明显表达的基因分为12个表达聚类。后两者之所以有所区别,是因为“迟缓”类在循环结束时显示出稳定增加的表达。将Cpn基本体(EB)的转录组和已发表的EB蛋白质组学数据与急性感染的簇分布进行了比较。我们发现“晚期”基因与编码EB蛋白的基因之间有一个有趣的关联,而“迟缓”基因主要与编码EB mRNA的基因相关。已经公开了铁耗竭导致Cpn持久性。我们将铁耗竭介导的持久性过程中的基因表达谱与急性感染的表达簇进行了比较。这导致发现,铁耗竭介导的持久性的建立更有可能是发育中的中期停滞,而不是完全不同的基因表达模式。在这里,我们描述了急性感染过程中的Cpn转录组,区分了与EB蛋白相关的“晚期”基因和导致EB mRNA的“迟滞”基因。铁介导的持久性过程中的表达谱使我们提出这样一个假说,即转录组“时钟”在急性中周期被阻滞。

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