KLF4 activates NFκB signaling and esophageal epithelial inflammation via the Rho-related GTP-binding protein RHOF.

Understanding the regulatory mechanisms within esophageal epithelia is essential to gain insight into the pathogenesis of esophageal diseases, which are among the leading causes of morbidity and mortality throughout the world. The zinc-finger transcription factor Krüppel-like factor (KLF4) is implic...

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Main Authors: Khvaramze Shaverdashvili, Jennie Padlo, Daniel Weinblatt, Yang Jia, Wenpeng Jiang, Divya Rao, Dorottya Laczkó, Kelly A Whelan, John P Lynch, Amanda B Muir, Jonathan P Katz
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2019-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0215746
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spelling doaj-eeaae1ba61d94098aacc5db5128931ff2021-03-03T20:43:52ZengPublic Library of Science (PLoS)PLoS ONE1932-62032019-01-01144e021574610.1371/journal.pone.0215746KLF4 activates NFκB signaling and esophageal epithelial inflammation via the Rho-related GTP-binding protein RHOF.Khvaramze ShaverdashviliJennie PadloDaniel WeinblattYang JiaWenpeng JiangDivya RaoDorottya LaczkóKelly A WhelanJohn P LynchAmanda B MuirJonathan P KatzUnderstanding the regulatory mechanisms within esophageal epithelia is essential to gain insight into the pathogenesis of esophageal diseases, which are among the leading causes of morbidity and mortality throughout the world. The zinc-finger transcription factor Krüppel-like factor (KLF4) is implicated in a large number of cellular processes, such as proliferation, differentiation, and inflammation in esophageal epithelia. In murine esophageal epithelia, Klf4 overexpression causes chronic inflammation which is mediated by activation of NFκB signaling downstream of KLF4, and this esophageal inflammation produces epithelial hyperplasia and subsequent esophageal squamous cell cancer. Yet, while NFκB activation clearly promotes esophageal inflammation, the mechanisms by which NFκB signaling is activated in esophageal diseases are not well understood. Here, we demonstrate that the Rho-related GTP-binding protein RHOF is activated by KLF4 in esophageal keratinocytes, leading to the induction of NFκB signaling. Moreover, RHOF is required for NFκB activation by KLF4 in esophageal keratinocytes and is also important for esophageal keratinocyte proliferation and migration. Finally, we find that RHOF is upregulated in eosinophilic esophagitis, an important esophageal inflammatory disease in humans. Thus, RHOF activation of NFκB in esophageal keratinocytes provides a potentially important and clinically-relevant mechanism for esophageal inflammation and inflammation-mediated esophageal squamous cell cancer.https://doi.org/10.1371/journal.pone.0215746
collection DOAJ
language English
format Article
sources DOAJ
author Khvaramze Shaverdashvili
Jennie Padlo
Daniel Weinblatt
Yang Jia
Wenpeng Jiang
Divya Rao
Dorottya Laczkó
Kelly A Whelan
John P Lynch
Amanda B Muir
Jonathan P Katz
spellingShingle Khvaramze Shaverdashvili
Jennie Padlo
Daniel Weinblatt
Yang Jia
Wenpeng Jiang
Divya Rao
Dorottya Laczkó
Kelly A Whelan
John P Lynch
Amanda B Muir
Jonathan P Katz
KLF4 activates NFκB signaling and esophageal epithelial inflammation via the Rho-related GTP-binding protein RHOF.
PLoS ONE
author_facet Khvaramze Shaverdashvili
Jennie Padlo
Daniel Weinblatt
Yang Jia
Wenpeng Jiang
Divya Rao
Dorottya Laczkó
Kelly A Whelan
John P Lynch
Amanda B Muir
Jonathan P Katz
author_sort Khvaramze Shaverdashvili
title KLF4 activates NFκB signaling and esophageal epithelial inflammation via the Rho-related GTP-binding protein RHOF.
title_short KLF4 activates NFκB signaling and esophageal epithelial inflammation via the Rho-related GTP-binding protein RHOF.
title_full KLF4 activates NFκB signaling and esophageal epithelial inflammation via the Rho-related GTP-binding protein RHOF.
title_fullStr KLF4 activates NFκB signaling and esophageal epithelial inflammation via the Rho-related GTP-binding protein RHOF.
title_full_unstemmed KLF4 activates NFκB signaling and esophageal epithelial inflammation via the Rho-related GTP-binding protein RHOF.
title_sort klf4 activates nfκb signaling and esophageal epithelial inflammation via the rho-related gtp-binding protein rhof.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2019-01-01
description Understanding the regulatory mechanisms within esophageal epithelia is essential to gain insight into the pathogenesis of esophageal diseases, which are among the leading causes of morbidity and mortality throughout the world. The zinc-finger transcription factor Krüppel-like factor (KLF4) is implicated in a large number of cellular processes, such as proliferation, differentiation, and inflammation in esophageal epithelia. In murine esophageal epithelia, Klf4 overexpression causes chronic inflammation which is mediated by activation of NFκB signaling downstream of KLF4, and this esophageal inflammation produces epithelial hyperplasia and subsequent esophageal squamous cell cancer. Yet, while NFκB activation clearly promotes esophageal inflammation, the mechanisms by which NFκB signaling is activated in esophageal diseases are not well understood. Here, we demonstrate that the Rho-related GTP-binding protein RHOF is activated by KLF4 in esophageal keratinocytes, leading to the induction of NFκB signaling. Moreover, RHOF is required for NFκB activation by KLF4 in esophageal keratinocytes and is also important for esophageal keratinocyte proliferation and migration. Finally, we find that RHOF is upregulated in eosinophilic esophagitis, an important esophageal inflammatory disease in humans. Thus, RHOF activation of NFκB in esophageal keratinocytes provides a potentially important and clinically-relevant mechanism for esophageal inflammation and inflammation-mediated esophageal squamous cell cancer.
url https://doi.org/10.1371/journal.pone.0215746
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