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Systems analysis of the transcriptional response of human ileocecal epithelial cells to Clostridium difficile toxins and effects on cell cycle control

BACKGROUND: Toxins A and B (TcdA and TcdB) are Clostridium difficile's principal virulence factors, yet the pathways by which they lead to inflammation and severe diarrhea remain unclear. Also, the relative role of either toxin during infection and the differences in their effects across cell l...

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Autores principales: D'Auria, Kevin M, Donato, Gina M, Gray, Mary C, Kolling, Glynis L, Warren, Cirle A, Cave, Lauren M, Solga, Michael D, Lannigan, Joanne A, Papin, Jason A, Hewlett, Erik L
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3266197/
https://www.ncbi.nlm.nih.gov/pubmed/22225989
http://dx.doi.org/10.1186/1752-0509-6-2
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author D'Auria, Kevin M
Donato, Gina M
Gray, Mary C
Kolling, Glynis L
Warren, Cirle A
Cave, Lauren M
Solga, Michael D
Lannigan, Joanne A
Papin, Jason A
Hewlett, Erik L
author_facet D'Auria, Kevin M
Donato, Gina M
Gray, Mary C
Kolling, Glynis L
Warren, Cirle A
Cave, Lauren M
Solga, Michael D
Lannigan, Joanne A
Papin, Jason A
Hewlett, Erik L
author_sort D'Auria, Kevin M
collection PubMed
description BACKGROUND: Toxins A and B (TcdA and TcdB) are Clostridium difficile's principal virulence factors, yet the pathways by which they lead to inflammation and severe diarrhea remain unclear. Also, the relative role of either toxin during infection and the differences in their effects across cell lines is still poorly understood. To better understand their effects in a susceptible cell line, we analyzed the transciptome-wide gene expression response of human ileocecal epithelial cells (HCT-8) after 2, 6, and 24 hr of toxin exposure. RESULTS: We show that toxins elicit very similar changes in the gene expression of HCT-8 cells, with the TcdB response occurring sooner. The high similarity suggests differences between toxins are due to events beyond transcription of a single cell-type and that their relative potencies during infection may depend on differential effects across cell types within the intestine. We next performed an enrichment analysis to determine biological functions associated with changes in transcription. Differentially expressed genes were associated with response to external stimuli and apoptotic mechanisms and, at 24 hr, were predominately associated with cell-cycle control and DNA replication. To validate our systems approach, we subsequently verified a novel G(1)/S and known G(2)/M cell-cycle block and increased apoptosis as predicted from our enrichment analysis. CONCLUSIONS: This study shows a successful example of a workflow deriving novel biological insight from transcriptome-wide gene expression. Importantly, we do not find any significant difference between TcdA and TcdB besides potency or kinetics. The role of each toxin in the inhibition of cell growth and proliferation, an important function of cells in the intestinal epithelium, is characterized.
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spelling pubmed-32661972012-01-26 Systems analysis of the transcriptional response of human ileocecal epithelial cells to Clostridium difficile toxins and effects on cell cycle control D'Auria, Kevin M Donato, Gina M Gray, Mary C Kolling, Glynis L Warren, Cirle A Cave, Lauren M Solga, Michael D Lannigan, Joanne A Papin, Jason A Hewlett, Erik L BMC Syst Biol Research Article BACKGROUND: Toxins A and B (TcdA and TcdB) are Clostridium difficile's principal virulence factors, yet the pathways by which they lead to inflammation and severe diarrhea remain unclear. Also, the relative role of either toxin during infection and the differences in their effects across cell lines is still poorly understood. To better understand their effects in a susceptible cell line, we analyzed the transciptome-wide gene expression response of human ileocecal epithelial cells (HCT-8) after 2, 6, and 24 hr of toxin exposure. RESULTS: We show that toxins elicit very similar changes in the gene expression of HCT-8 cells, with the TcdB response occurring sooner. The high similarity suggests differences between toxins are due to events beyond transcription of a single cell-type and that their relative potencies during infection may depend on differential effects across cell types within the intestine. We next performed an enrichment analysis to determine biological functions associated with changes in transcription. Differentially expressed genes were associated with response to external stimuli and apoptotic mechanisms and, at 24 hr, were predominately associated with cell-cycle control and DNA replication. To validate our systems approach, we subsequently verified a novel G(1)/S and known G(2)/M cell-cycle block and increased apoptosis as predicted from our enrichment analysis. CONCLUSIONS: This study shows a successful example of a workflow deriving novel biological insight from transcriptome-wide gene expression. Importantly, we do not find any significant difference between TcdA and TcdB besides potency or kinetics. The role of each toxin in the inhibition of cell growth and proliferation, an important function of cells in the intestinal epithelium, is characterized. BioMed Central 2012-01-06 /pmc/articles/PMC3266197/ /pubmed/22225989 http://dx.doi.org/10.1186/1752-0509-6-2 Text en Copyright ©2012 D'Auria et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
D'Auria, Kevin M
Donato, Gina M
Gray, Mary C
Kolling, Glynis L
Warren, Cirle A
Cave, Lauren M
Solga, Michael D
Lannigan, Joanne A
Papin, Jason A
Hewlett, Erik L
Systems analysis of the transcriptional response of human ileocecal epithelial cells to Clostridium difficile toxins and effects on cell cycle control
title Systems analysis of the transcriptional response of human ileocecal epithelial cells to Clostridium difficile toxins and effects on cell cycle control
title_full Systems analysis of the transcriptional response of human ileocecal epithelial cells to Clostridium difficile toxins and effects on cell cycle control
title_fullStr Systems analysis of the transcriptional response of human ileocecal epithelial cells to Clostridium difficile toxins and effects on cell cycle control
title_full_unstemmed Systems analysis of the transcriptional response of human ileocecal epithelial cells to Clostridium difficile toxins and effects on cell cycle control
title_short Systems analysis of the transcriptional response of human ileocecal epithelial cells to Clostridium difficile toxins and effects on cell cycle control
title_sort systems analysis of the transcriptional response of human ileocecal epithelial cells to clostridium difficile toxins and effects on cell cycle control
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3266197/
https://www.ncbi.nlm.nih.gov/pubmed/22225989
http://dx.doi.org/10.1186/1752-0509-6-2
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