Cargando…

Transcription factor-mediated intestinal metaplasia and the role of a shadow enhancer

Barrett's esophagus (BE) and gastric intestinal metaplasia are related premalignant conditions in which areas of human stomach epithelium express mixed gastric and intestinal features. Intestinal transcription factors (TFs) are expressed in both conditions, with unclear causal roles and cis-reg...

Descripción completa

Detalles Bibliográficos
Autores principales: Singh, Harshabad, Seruggia, Davide, Madha, Shariq, Saxena, Madhurima, Nagaraja, Ankur K., Wu, Zhong, Zhou, Jin, Huebner, Aaron J., Maglieri, Adrianna, Wezenbeek, Juliette, Hochedlinger, Konrad, Orkin, Stuart H., Bass, Adam J., Hornick, Jason L., Shivdasani, Ramesh A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8763054/
https://www.ncbi.nlm.nih.gov/pubmed/34969824
http://dx.doi.org/10.1101/gad.348983.121
_version_ 1784633875068092416
author Singh, Harshabad
Seruggia, Davide
Madha, Shariq
Saxena, Madhurima
Nagaraja, Ankur K.
Wu, Zhong
Zhou, Jin
Huebner, Aaron J.
Maglieri, Adrianna
Wezenbeek, Juliette
Hochedlinger, Konrad
Orkin, Stuart H.
Bass, Adam J.
Hornick, Jason L.
Shivdasani, Ramesh A.
author_facet Singh, Harshabad
Seruggia, Davide
Madha, Shariq
Saxena, Madhurima
Nagaraja, Ankur K.
Wu, Zhong
Zhou, Jin
Huebner, Aaron J.
Maglieri, Adrianna
Wezenbeek, Juliette
Hochedlinger, Konrad
Orkin, Stuart H.
Bass, Adam J.
Hornick, Jason L.
Shivdasani, Ramesh A.
author_sort Singh, Harshabad
collection PubMed
description Barrett's esophagus (BE) and gastric intestinal metaplasia are related premalignant conditions in which areas of human stomach epithelium express mixed gastric and intestinal features. Intestinal transcription factors (TFs) are expressed in both conditions, with unclear causal roles and cis-regulatory mechanisms. Ectopic CDX2 reprogrammed isogenic mouse stomach organoid lines to a hybrid stomach–intestinal state transcriptionally similar to clinical metaplasia; squamous esophageal organoids resisted this CDX2-mediated effect. Reprogramming was associated with induced activity at thousands of previously inaccessible intestine-restricted enhancers, where CDX2 occupied DNA directly. HNF4A, a TF recently implicated in BE pathogenesis, induced weaker intestinalization by binding a novel shadow Cdx2 enhancer and hence activating Cdx2 expression. CRISPR/Cas9-mediated germline deletion of that cis-element demonstrated its requirement in Cdx2 induction and in the resulting activation of intestinal genes in stomach cells. dCas9-conjugated KRAB repression mapped this activity to the shadow enhancer's HNF4A binding site. Altogether, we show extensive but selective recruitment of intestinal enhancers by CDX2 in gastric cells and that HNF4A-mediated ectopic CDX2 expression in the stomach occurs through a conserved shadow cis-element. These findings identify mechanisms for TF-driven intestinal metaplasia and a likely pathogenic TF hierarchy.
format Online
Article
Text
id pubmed-8763054
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Cold Spring Harbor Laboratory Press
record_format MEDLINE/PubMed
spelling pubmed-87630542022-07-01 Transcription factor-mediated intestinal metaplasia and the role of a shadow enhancer Singh, Harshabad Seruggia, Davide Madha, Shariq Saxena, Madhurima Nagaraja, Ankur K. Wu, Zhong Zhou, Jin Huebner, Aaron J. Maglieri, Adrianna Wezenbeek, Juliette Hochedlinger, Konrad Orkin, Stuart H. Bass, Adam J. Hornick, Jason L. Shivdasani, Ramesh A. Genes Dev Research Paper Barrett's esophagus (BE) and gastric intestinal metaplasia are related premalignant conditions in which areas of human stomach epithelium express mixed gastric and intestinal features. Intestinal transcription factors (TFs) are expressed in both conditions, with unclear causal roles and cis-regulatory mechanisms. Ectopic CDX2 reprogrammed isogenic mouse stomach organoid lines to a hybrid stomach–intestinal state transcriptionally similar to clinical metaplasia; squamous esophageal organoids resisted this CDX2-mediated effect. Reprogramming was associated with induced activity at thousands of previously inaccessible intestine-restricted enhancers, where CDX2 occupied DNA directly. HNF4A, a TF recently implicated in BE pathogenesis, induced weaker intestinalization by binding a novel shadow Cdx2 enhancer and hence activating Cdx2 expression. CRISPR/Cas9-mediated germline deletion of that cis-element demonstrated its requirement in Cdx2 induction and in the resulting activation of intestinal genes in stomach cells. dCas9-conjugated KRAB repression mapped this activity to the shadow enhancer's HNF4A binding site. Altogether, we show extensive but selective recruitment of intestinal enhancers by CDX2 in gastric cells and that HNF4A-mediated ectopic CDX2 expression in the stomach occurs through a conserved shadow cis-element. These findings identify mechanisms for TF-driven intestinal metaplasia and a likely pathogenic TF hierarchy. Cold Spring Harbor Laboratory Press 2022-01-01 /pmc/articles/PMC8763054/ /pubmed/34969824 http://dx.doi.org/10.1101/gad.348983.121 Text en © 2022 Singh et al.; Published by Cold Spring Harbor Laboratory Press https://creativecommons.org/licenses/by-nc/4.0/This article is distributed exclusively by Cold Spring Harbor Laboratory Press for the first six months after the full-issue publication date (see http://genesdev.cshlp.org/site/misc/terms.xhtml). After six months, it is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) .
spellingShingle Research Paper
Singh, Harshabad
Seruggia, Davide
Madha, Shariq
Saxena, Madhurima
Nagaraja, Ankur K.
Wu, Zhong
Zhou, Jin
Huebner, Aaron J.
Maglieri, Adrianna
Wezenbeek, Juliette
Hochedlinger, Konrad
Orkin, Stuart H.
Bass, Adam J.
Hornick, Jason L.
Shivdasani, Ramesh A.
Transcription factor-mediated intestinal metaplasia and the role of a shadow enhancer
title Transcription factor-mediated intestinal metaplasia and the role of a shadow enhancer
title_full Transcription factor-mediated intestinal metaplasia and the role of a shadow enhancer
title_fullStr Transcription factor-mediated intestinal metaplasia and the role of a shadow enhancer
title_full_unstemmed Transcription factor-mediated intestinal metaplasia and the role of a shadow enhancer
title_short Transcription factor-mediated intestinal metaplasia and the role of a shadow enhancer
title_sort transcription factor-mediated intestinal metaplasia and the role of a shadow enhancer
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8763054/
https://www.ncbi.nlm.nih.gov/pubmed/34969824
http://dx.doi.org/10.1101/gad.348983.121
work_keys_str_mv AT singhharshabad transcriptionfactormediatedintestinalmetaplasiaandtheroleofashadowenhancer
AT seruggiadavide transcriptionfactormediatedintestinalmetaplasiaandtheroleofashadowenhancer
AT madhashariq transcriptionfactormediatedintestinalmetaplasiaandtheroleofashadowenhancer
AT saxenamadhurima transcriptionfactormediatedintestinalmetaplasiaandtheroleofashadowenhancer
AT nagarajaankurk transcriptionfactormediatedintestinalmetaplasiaandtheroleofashadowenhancer
AT wuzhong transcriptionfactormediatedintestinalmetaplasiaandtheroleofashadowenhancer
AT zhoujin transcriptionfactormediatedintestinalmetaplasiaandtheroleofashadowenhancer
AT huebneraaronj transcriptionfactormediatedintestinalmetaplasiaandtheroleofashadowenhancer
AT maglieriadrianna transcriptionfactormediatedintestinalmetaplasiaandtheroleofashadowenhancer
AT wezenbeekjuliette transcriptionfactormediatedintestinalmetaplasiaandtheroleofashadowenhancer
AT hochedlingerkonrad transcriptionfactormediatedintestinalmetaplasiaandtheroleofashadowenhancer
AT orkinstuarth transcriptionfactormediatedintestinalmetaplasiaandtheroleofashadowenhancer
AT bassadamj transcriptionfactormediatedintestinalmetaplasiaandtheroleofashadowenhancer
AT hornickjasonl transcriptionfactormediatedintestinalmetaplasiaandtheroleofashadowenhancer
AT shivdasaniramesha transcriptionfactormediatedintestinalmetaplasiaandtheroleofashadowenhancer