Coincidence cloning recovery of Brucella melitensis RNA from goat tissues: advancing the in vivo analysis of pathogen gene expression in brucellosis

IF 2.946 Q3 Biochemistry, Genetics and Molecular Biology BMC Molecular Biology Pub Date : 2018-08-01 DOI:10.1186/s12867-018-0111-x
Paola M. Boggiatto, Daniel Fitzsimmons, Darrell O. Bayles, David Alt, Catherine E. Vrentas, Steven C. Olsen
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引用次数: 5

Abstract

Brucella melitensis bacteria cause persistent, intracellular infections in small ruminants as well as in humans, leading to significant morbidity and economic loss worldwide. The majority of experiments on the transcriptional responses of Brucella to conditions inside the host have been performed following invasion of cultured mammalian cells, and do not address gene expression patterns during long-term infection.

Here, we examine the application of the previously developed coincidence cloning methodology to recover and characterize B. melitensis RNA from the supramammary lymph node of experimentally-infected goats. Using coincidence cloning, we successfully recovered Brucella RNA from supramammary lymph nodes of B. melitensis-infected goats at both short-term (4?weeks) and long-term (38?weeks) infection time points. Amplified nucleic acid levels were sufficient for analysis of Brucella gene expression patterns by RNA-sequencing, providing evidence of metabolic activity in both the short-term and the long-term samples. We developed a workflow for the use of sequence polymorphism analysis to confirm recovery of the inoculated strain in the recovered reads, and utilized clustering analysis to demonstrate a distinct transcriptional profile present in samples recovered in long-term infection. In this first look at B. melitensis gene expression patterns in vivo, the subset of Brucella genes that was highly upregulated in long-term as compared to short-term infection included genes linked to roles in murine infection, such as genes involved in proline utilization and signal transduction. Finally, we demonstrated the challenges of qPCR validation of samples with very low ratios of pathogen:host RNA, as is the case during in vivo brucellosis, and alternatively characterized intermediate products of the coincidence cloning reaction.

Overall, this study provides the first example of recovery plus characterization of B. melitensis RNA from in vivo lymph node infection, and demonstrates that the coincidence cloning technique is a useful tool for characterizing in vivo transcriptional changes in Brucella species. Genes upregulated in long-term infection in this data set, including many genes not previously demonstrated to be virulence factors in mice or macrophage experiments, are candidates of future interest for potential roles in Brucella persistence in natural host systems.

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山羊组织中梅利特布氏菌RNA的重合克隆恢复:推进布氏菌病病原菌基因在体内表达的分析
在小反刍动物和人类中,梅利氏布鲁氏菌引起持续的细胞内感染,在世界范围内导致重大发病率和经济损失。大多数关于布鲁氏菌对宿主内部条件的转录反应的实验都是在培养的哺乳动物细胞入侵后进行的,并且没有解决长期感染期间的基因表达模式。在这里,我们研究了先前开发的巧合克隆方法的应用,以从实验感染的山羊的乳腺上淋巴结中恢复和表征山羊B. melitensis RNA。通过巧合克隆,我们成功地从短期(4周)和长期(38周)感染布氏杆菌的山羊乳腺上淋巴结中恢复了布氏菌RNA。扩增的核酸水平足以通过rna测序分析布鲁氏菌基因表达模式,为短期和长期样品的代谢活性提供证据。我们开发了一个使用序列多态性分析的工作流程,以确认在恢复的reads中接种菌株的恢复,并利用聚类分析来证明在长期感染中恢复的样本中存在明显的转录谱。在首次观察布氏杆菌在体内的基因表达模式时,与短期感染相比,布氏菌基因子集在长期感染中高度上调,包括与小鼠感染相关的基因,如涉及脯氨酸利用和信号转导的基因。最后,我们展示了在病原体:宿主RNA比例非常低的样品中进行qPCR验证的挑战,就像在体内布鲁氏菌病期间的情况一样,或者表征巧合克隆反应的中间产物。总的来说,本研究首次提供了从体内淋巴结感染中恢复和鉴定布氏菌RNA的例子,并证明巧合克隆技术是表征布氏菌物种体内转录变化的有用工具。在该数据集中,在长期感染中上调的基因,包括许多以前在小鼠或巨噬细胞实验中未被证明是毒力因子的基因,是未来布鲁氏菌在自然宿主系统中持续存在的潜在作用的候选基因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BMC Molecular Biology
BMC Molecular Biology 生物-生化与分子生物学
CiteScore
4.80
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: BMC Molecular Biology is an open access journal publishing original peer-reviewed research articles in all aspects of DNA and RNA in a cellular context, encompassing investigations of chromatin, replication, recombination, mutation, repair, transcription, translation and RNA processing and function.
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