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Single-Cell Analysis Reveals Unexpected Cellular Changes and Transposon Expression Signatures in the Colonic Epithelium of Treatment-Naïve Adult Crohn’s Disease Patients

BACKGROUND & AIMS: The intestinal barrier comprises a monolayer of specialized intestinal epithelial cells (IECs) that are critical in maintaining mucosal homeostasis. Dysfunction within various IEC fractions can alter intestinal permeability in a genetically susceptible host, resulting in a chr...

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Autores principales: Kanke, Matt, Kennedy Ng, Meaghan M., Connelly, Sean, Singh, Manvendra, Schaner, Matthew, Shanahan, Michael T., Wolber, Elizabeth A., Beasley, Caroline, Lian, Grace, Jain, Animesh, Long, Millie D., Barnes, Edward L., Herfarth, Hans H., Isaacs, Kim L., Hansen, Jonathon J., Kapadia, Muneera, Guillem, Jose Gaston, Feschotte, Cedric, Furey, Terrence S., Sheikh, Shehzad Z., Sethupathy, Praveen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9046244/
https://www.ncbi.nlm.nih.gov/pubmed/35158099
http://dx.doi.org/10.1016/j.jcmgh.2022.02.005
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author Kanke, Matt
Kennedy Ng, Meaghan M.
Connelly, Sean
Singh, Manvendra
Schaner, Matthew
Shanahan, Michael T.
Wolber, Elizabeth A.
Beasley, Caroline
Lian, Grace
Jain, Animesh
Long, Millie D.
Barnes, Edward L.
Herfarth, Hans H.
Isaacs, Kim L.
Hansen, Jonathon J.
Kapadia, Muneera
Guillem, Jose Gaston
Feschotte, Cedric
Furey, Terrence S.
Sheikh, Shehzad Z.
Sethupathy, Praveen
author_facet Kanke, Matt
Kennedy Ng, Meaghan M.
Connelly, Sean
Singh, Manvendra
Schaner, Matthew
Shanahan, Michael T.
Wolber, Elizabeth A.
Beasley, Caroline
Lian, Grace
Jain, Animesh
Long, Millie D.
Barnes, Edward L.
Herfarth, Hans H.
Isaacs, Kim L.
Hansen, Jonathon J.
Kapadia, Muneera
Guillem, Jose Gaston
Feschotte, Cedric
Furey, Terrence S.
Sheikh, Shehzad Z.
Sethupathy, Praveen
author_sort Kanke, Matt
collection PubMed
description BACKGROUND & AIMS: The intestinal barrier comprises a monolayer of specialized intestinal epithelial cells (IECs) that are critical in maintaining mucosal homeostasis. Dysfunction within various IEC fractions can alter intestinal permeability in a genetically susceptible host, resulting in a chronic and debilitating condition known as Crohn’s disease (CD). Defining the molecular changes in each IEC type in CD will contribute to an improved understanding of the pathogenic processes and the identification of cell type–specific therapeutic targets. We performed, at single-cell resolution, a direct comparison of the colonic epithelial cellular and molecular landscape between treatment-naïve adult CD and non–inflammatory bowel disease control patients. METHODS: Colonic epithelial-enriched, single-cell sequencing from treatment-naïve adult CD and non–inflammatory bowel disease patients was investigated to identify disease-induced differences in IEC types. RESULTS: Our analysis showed that in CD patients there is a significant skew in the colonic epithelial cellular distribution away from canonical LGR5+ stem cells, located at the crypt bottom, and toward one specific subtype of mature colonocytes, located at the crypt top. Further analysis showed unique changes to gene expression programs in every major cell type, including a previously undescribed suppression in CD of most enteroendocrine driver genes as well as L-cell markers including GCG. We also dissect an incompletely understood SPIB+ cell cluster, revealing at least 4 subclusters that likely represent different stages of a maturational trajectory. One of these SPIB+ subclusters expresses crypt-top colonocyte markers and is up-regulated significantly in CD, whereas another subcluster strongly expresses and stains positive for lysozyme (albeit no other canonical Paneth cell marker), which surprisingly is greatly reduced in expression in CD. In addition, we also discovered transposable element markers of colonic epithelial cell types as well as transposable element families that are altered significantly in CD in a cell type–specific manner. Finally, through integration with data from genome-wide association studies, we show that genes implicated in CD risk show heretofore unknown cell type–specific patterns of aberrant expression in CD, providing unprecedented insight into the potential biological functions of these genes. CONCLUSIONS: Single-cell analysis shows a number of unexpected cellular and molecular features, including transposable element expression signatures, in the colonic epithelium of treatment-naïve adult CD.
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spelling pubmed-90462442022-04-29 Single-Cell Analysis Reveals Unexpected Cellular Changes and Transposon Expression Signatures in the Colonic Epithelium of Treatment-Naïve Adult Crohn’s Disease Patients Kanke, Matt Kennedy Ng, Meaghan M. Connelly, Sean Singh, Manvendra Schaner, Matthew Shanahan, Michael T. Wolber, Elizabeth A. Beasley, Caroline Lian, Grace Jain, Animesh Long, Millie D. Barnes, Edward L. Herfarth, Hans H. Isaacs, Kim L. Hansen, Jonathon J. Kapadia, Muneera Guillem, Jose Gaston Feschotte, Cedric Furey, Terrence S. Sheikh, Shehzad Z. Sethupathy, Praveen Cell Mol Gastroenterol Hepatol Original Research BACKGROUND & AIMS: The intestinal barrier comprises a monolayer of specialized intestinal epithelial cells (IECs) that are critical in maintaining mucosal homeostasis. Dysfunction within various IEC fractions can alter intestinal permeability in a genetically susceptible host, resulting in a chronic and debilitating condition known as Crohn’s disease (CD). Defining the molecular changes in each IEC type in CD will contribute to an improved understanding of the pathogenic processes and the identification of cell type–specific therapeutic targets. We performed, at single-cell resolution, a direct comparison of the colonic epithelial cellular and molecular landscape between treatment-naïve adult CD and non–inflammatory bowel disease control patients. METHODS: Colonic epithelial-enriched, single-cell sequencing from treatment-naïve adult CD and non–inflammatory bowel disease patients was investigated to identify disease-induced differences in IEC types. RESULTS: Our analysis showed that in CD patients there is a significant skew in the colonic epithelial cellular distribution away from canonical LGR5+ stem cells, located at the crypt bottom, and toward one specific subtype of mature colonocytes, located at the crypt top. Further analysis showed unique changes to gene expression programs in every major cell type, including a previously undescribed suppression in CD of most enteroendocrine driver genes as well as L-cell markers including GCG. We also dissect an incompletely understood SPIB+ cell cluster, revealing at least 4 subclusters that likely represent different stages of a maturational trajectory. One of these SPIB+ subclusters expresses crypt-top colonocyte markers and is up-regulated significantly in CD, whereas another subcluster strongly expresses and stains positive for lysozyme (albeit no other canonical Paneth cell marker), which surprisingly is greatly reduced in expression in CD. In addition, we also discovered transposable element markers of colonic epithelial cell types as well as transposable element families that are altered significantly in CD in a cell type–specific manner. Finally, through integration with data from genome-wide association studies, we show that genes implicated in CD risk show heretofore unknown cell type–specific patterns of aberrant expression in CD, providing unprecedented insight into the potential biological functions of these genes. CONCLUSIONS: Single-cell analysis shows a number of unexpected cellular and molecular features, including transposable element expression signatures, in the colonic epithelium of treatment-naïve adult CD. Elsevier 2022-02-12 /pmc/articles/PMC9046244/ /pubmed/35158099 http://dx.doi.org/10.1016/j.jcmgh.2022.02.005 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Research
Kanke, Matt
Kennedy Ng, Meaghan M.
Connelly, Sean
Singh, Manvendra
Schaner, Matthew
Shanahan, Michael T.
Wolber, Elizabeth A.
Beasley, Caroline
Lian, Grace
Jain, Animesh
Long, Millie D.
Barnes, Edward L.
Herfarth, Hans H.
Isaacs, Kim L.
Hansen, Jonathon J.
Kapadia, Muneera
Guillem, Jose Gaston
Feschotte, Cedric
Furey, Terrence S.
Sheikh, Shehzad Z.
Sethupathy, Praveen
Single-Cell Analysis Reveals Unexpected Cellular Changes and Transposon Expression Signatures in the Colonic Epithelium of Treatment-Naïve Adult Crohn’s Disease Patients
title Single-Cell Analysis Reveals Unexpected Cellular Changes and Transposon Expression Signatures in the Colonic Epithelium of Treatment-Naïve Adult Crohn’s Disease Patients
title_full Single-Cell Analysis Reveals Unexpected Cellular Changes and Transposon Expression Signatures in the Colonic Epithelium of Treatment-Naïve Adult Crohn’s Disease Patients
title_fullStr Single-Cell Analysis Reveals Unexpected Cellular Changes and Transposon Expression Signatures in the Colonic Epithelium of Treatment-Naïve Adult Crohn’s Disease Patients
title_full_unstemmed Single-Cell Analysis Reveals Unexpected Cellular Changes and Transposon Expression Signatures in the Colonic Epithelium of Treatment-Naïve Adult Crohn’s Disease Patients
title_short Single-Cell Analysis Reveals Unexpected Cellular Changes and Transposon Expression Signatures in the Colonic Epithelium of Treatment-Naïve Adult Crohn’s Disease Patients
title_sort single-cell analysis reveals unexpected cellular changes and transposon expression signatures in the colonic epithelium of treatment-naïve adult crohn’s disease patients
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9046244/
https://www.ncbi.nlm.nih.gov/pubmed/35158099
http://dx.doi.org/10.1016/j.jcmgh.2022.02.005
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