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杜克雷嗜血菌在厌氧生长过程中差异表达的基因与在人类志愿者实验感染过程中差异表达的基因显著重叠。

Genes Differentially Expressed by Haemophilus ducreyi during Anaerobic Growth Significantly Overlap Those Differentially Expressed during Experimental Infection of Human Volunteers.

机构信息

Department of Microbiology and Immunology, Indiana University School of Medicine, Indianapolis, Indiana, USA.

Department of Medicine, Indiana University School of Medicine, Indianapolis, Indiana, USA.

出版信息

J Bacteriol. 2022 May 17;204(5):e0000522. doi: 10.1128/jb.00005-22. Epub 2022 Apr 4.

Abstract

Haemophilus ducreyi causes cutaneous ulcers in children and the genital ulcer disease chancroid in adults. In humans, H. ducreyi is found in the anaerobic environment of an abscess; previous studies comparing bacterial gene expression levels in pustules with the inocula (∼4-h aerobic mid-log-phase cultures) identified several upregulated differentially expressed genes (DEGs) that are associated with anaerobic metabolism. To determine how H. ducreyi alters its gene expression in response to anaerobiosis, we performed RNA sequencing (RNA-seq) on both aerobic and anaerobic broth cultures harvested after 4, 8, and 18 h of growth. Principal-coordinate analysis (PCoA) plots showed that anaerobic growth resulted in distinct transcriptional profiles compared to aerobic growth. During anaerobic growth, early-time-point comparisons (4 versus 8 h) identified few DEGs at a 2-fold change in expression and a false discovery rate (FDR) of <0.01. By 18 h, we observed 18 upregulated and 16 downregulated DEGs. DEGs involved in purine metabolism, the uptake and use of alternative carbon sources, toxin production, nitrate reduction, glycine metabolism, and tetrahydrofolate synthesis were upregulated; DEGs involved in electron transport, thiamine biosynthesis, DNA recombination, peptidoglycan synthesis, and riboflavin synthesis or modification were downregulated. To examine whether transcriptional changes that occur during anaerobiosis overlap those that occur during infection of human volunteers, we compared the overlap of DEGs obtained from 4 h of aerobic growth to 18 h of anaerobic growth to those found between the inocula and pustules in previous studies; the DEGs significantly overlapped. Thus, a major component of H. ducreyi gene regulation involves adaptation to anaerobiosis. In humans, H. ducreyi resides in the anaerobic environment of an abscess and appears to upregulate genes involved in anaerobic metabolism. How anaerobiosis alone affects gene transcription in H. ducreyi is unknown. Using RNA-seq, we investigated how anaerobiosis affects gene transcription over time compared to aerobic growth. Our results suggest that a substantial component of H. ducreyi gene regulation overlaps the organism's response to anaerobiosis . Our data identify potential therapeutic targets that could be inhibited during growth.

摘要

杜克嗜血杆菌可引起儿童皮肤溃疡和成人生殖器溃疡疾病软下疳。在人类中,杜克嗜血杆菌存在于脓肿的厌氧环境中;之前的研究比较了脓疱和接种物(~4 小时有氧对数中期培养物)中细菌基因表达水平,发现了几个上调的差异表达基因(DEG),这些基因与厌氧代谢有关。为了确定杜克嗜血杆菌如何响应厌氧环境改变其基因表达,我们对有氧和厌氧肉汤培养物进行了 RNA 测序(RNA-seq),分别在 4、8 和 18 小时的生长后进行采集。主坐标分析(PCoA)图谱显示,与有氧生长相比,厌氧生长导致了明显不同的转录谱。在厌氧生长过程中,早期时间点(4 与 8 小时)的比较仅在表达水平上有 2 倍变化且错误发现率(FDR)<0.01 时鉴定出少数差异表达基因。到 18 小时时,我们观察到 18 个上调和 16 个下调的差异表达基因。参与嘌呤代谢、替代碳源摄取和利用、毒素产生、硝酸盐还原、甘氨酸代谢和四氢叶酸合成的基因上调;参与电子传递、硫胺素生物合成、DNA 重组、肽聚糖合成和核黄素合成或修饰的基因下调。为了检查厌氧过程中发生的转录变化是否与人类志愿者感染期间发生的变化重叠,我们将从有氧生长 4 小时获得的差异表达基因与厌氧生长 18 小时的差异表达基因与之前研究中接种物和脓疱之间的差异表达基因进行了比较;发现差异表达基因显著重叠。因此,杜克嗜血杆菌基因调控的一个主要组成部分涉及对厌氧环境的适应。在人类中,杜克嗜血杆菌存在于脓肿的厌氧环境中,似乎上调了参与厌氧代谢的基因。单独的厌氧环境如何影响杜克嗜血杆菌的基因转录尚不清楚。我们使用 RNA-seq 研究了与有氧生长相比,厌氧环境随时间变化如何影响基因转录。我们的结果表明,杜克嗜血杆菌基因调控的一个重要组成部分与生物体对厌氧环境的反应重叠。我们的数据确定了一些潜在的治疗靶点,这些靶点可能在生长过程中受到抑制。

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