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Invasion of Human Cells by a Bacterial Pathogen
Published on: March 21, 2011
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Streptococcus canis transcriptomic modifications in host cell entry environments of human keratinocytes
Haruno Yoshida1, Mieko Goto1, Yuzo Tsuyuki1,2
1Laboratory of Infectious Diseases, Graduate School of Infection Control Sciences and Ōmura Satoshi Memorial Institute, Kitasato University, 5-9-1 Shirokane, Minato-ku, Tokyo, 108-8641, Japan.
BMC Genomics
|November 4, 2024
Summary
Streptococcus canis, a common pet bacterium, can infect humans. This study reveals S. canis downregulates metabolism genes in human keratinocytes, potentially indicating latent infection.
Area of Science:
- Microbiology
- Genomics
- Infectious Diseases
Background:
- Streptococcus canis is a commensal bacterium in companion animals.
- It can infect humans through skin/soft tissue, particularly via dog bites.
- Understanding its pathogenic mechanisms in human cells is crucial.
Purpose of the Study:
- To investigate the transcriptomic changes of Streptococcus canis during invasion of human keratinocytes.
- To identify key genes and pathways affected during host cell interaction.
Main Methods:
- Selected a S. canis isolate (FU1) based on cell invasion ability and cytotoxicity.
- Performed RNA-sequencing at baseline and post-inoculation (2h/5h) in human keratinocytes.
- Utilized principal component analysis (PCA), k-means clustering, and differential gene expression (DEG) analysis.
- Validated findings using quantitative reverse transcription-polymerase chain reaction (qRT-PCR).
Main Results:
- RNA-sequencing revealed significant gene expression alterations in S. canis upon keratinocyte invasion.
- Gene ontology analysis indicated widespread downregulation of metabolism-associated genes (energy, carbohydrate, amino acid, nucleotide transport/metabolism).
- Upregulated genes were primarily associated with transcription.
- qRT-PCR confirmed the downregulation of pgk and opuAA, and upregulation of slo and kdpB genes.
Conclusions:
- S. canis downregulates metabolism-related gene expression when interacting with human keratinocytes.
- These transcriptomic shifts suggest a potential for latent infection.
- Further research is required to fully understand the mechanisms of S. canis latent infection in human cells.
Keywords:
Streptococcus canisHuman keratinocyteInvasionQuantitative reverse transcription-polymerase chain reactionTranscriptome
