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Gene Expression Profiling of Infecting Microbes Using a Digital Bar-coding Platform
Published on: January 13, 2016
Global Transcriptomic Profiling of Pulmonary Gene Expression in an Experimental Murine Model of Rickettsia conorii
Hema P Narra1, Abha Sahni2, Kamil Khanipov3
1Department of Pathology, University of Texas Medical Branch, Galveston, TX 77555, USA. hpnarra@utmb.edu.
Abstract:
Mediterranean spotted fever develops from an infection with Rickettsia conorii, an obligate intracellular, Gram-negative, endotheliotropic, and tick-transmitted bacterial pathogen, and is an acute, febrile illness that can progress to life-threatening complications if not diagnosed and treated early with effective antibiotics. Despite significant morbidity and mortality, little is known about changes in gene expression that determine the host responses during in vivo infection. We have investigated the transcriptional landscape of host lungs as a prominently affected organ system in an established murine model of infection by RNA-sequencing. Ingenuity pathway analysis resulted in the identification of 1332 differentially expressed genes and 292 upstream regulators. Notably, genes encoding for ubiquitin D, aconitate decarboxylase, antimicrobial peptides, calgranulins, cytokines and chemokines, and guanylate binding proteins were highly up-regulated, whereas those involved in hemoglobin biosynthesis and heme homeostasis were significantly down-regulated. Amongst response regulators, nucleotide-binding oligomerization domain-containing protein 2 and killer cell lectin-like receptors were differentially expressed, and gene clustering revealed eukaryotic initiation factor-2, oxidative phosphorylation, and ubiquitination as the predominantly activated biological pathways. Collectively, this first global transcriptomic profiling has identified R. conorii-induced regulation of novel genes and pathways in the host lungs, further in-depth investigation of which will strengthen our understanding of the pathogenesis of human rickettsioses.
Insights
This study reveals key host gene expression changes in the lungs during Rickettsia conorii infection. Understanding these responses is crucial for developing better treatments for Mediterranean spotted fever.
Area of Science:
- Microbiology
- Immunology
- Genomics
Background:
- Mediterranean spotted fever is caused by Rickettsia conorii, a tick-borne bacterium.
- Early diagnosis and antibiotic treatment are vital to prevent severe complications.
- Limited knowledge exists regarding host gene expression changes during R. conorii infection.
Purpose of the Study:
- To investigate the host lung's transcriptional landscape during Rickettsia conorii infection in a murine model.
- To identify differentially expressed genes and activated biological pathways.
Main Methods:
- RNA sequencing was employed to analyze the host lung transcriptome.
- Ingenuity pathway analysis was used to identify differentially expressed genes and upstream regulators.
Main Results:
- 1332 differentially expressed genes and 292 upstream regulators were identified.
- Genes related to antimicrobial peptides, cytokines, and ubiquitination were upregulated.
- Genes involved in hemoglobin biosynthesis and heme homeostasis were downregulated.
Conclusions:
- This study provides the first global transcriptomic profile of R. conorii infection in host lungs.
- Identified novel genes and pathways regulated by R. conorii infection.
- Further research into these pathways will enhance understanding of rickettsioses pathogenesis.
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