IκB kinase β regulates epithelium migration during corneal wound healing.

The IKKβ is known to regulate transcription factor NF-κB activation leading to inflammatory responses. Recent gene knockout studies have shown that IKKβ can orchestrate local inflammatory responses and regulate homeostasis of epithelial tissues. To investigate whether IKKβ has an intrinsic role in e...

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Main Authors: Liang Chen, Qinghang Meng, Winston Kao, Ying Xia
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3022035?pdf=render
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spelling doaj-172db83fad8442a99e309b350c8c72eb2020-11-25T02:33:55ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-0161e1613210.1371/journal.pone.0016132IκB kinase β regulates epithelium migration during corneal wound healing.Liang ChenQinghang MengWinston KaoYing XiaThe IKKβ is known to regulate transcription factor NF-κB activation leading to inflammatory responses. Recent gene knockout studies have shown that IKKβ can orchestrate local inflammatory responses and regulate homeostasis of epithelial tissues. To investigate whether IKKβ has an intrinsic role in epithelial cells, we established an in vivo system in the immune privileged corneal epithelium. We generated triple transgenic Krt12(rtTA/rtTAt)/tet-O-Cre/Ikkβ(F/F) (Ikkβ(ΔCE/ΔCE)) mice by crossing the Krt12-rtTA knock-in mice, which express the reverse tetracycline transcription activator in corneal epithelial cells, with the tet-O-Cre and Ikkβ(F/F) mice. Doxycycline-induced IKKβ ablation occurred in corneal epithelial cells of triple transgenic Ikkβ(ΔCE/ΔCE) mice, but loss of IKKβ did not cause ocular abnormalities in fetal development and postnatal maintenance. Instead, loss of IKKβ significantly delayed healing of corneal epithelial debridement without affecting cell proliferation, apoptosis or macrophage infiltration. In vitro studies with human corneal epithelial cells (HCEpi) also showed that IKKβ was required for cytokine-induced cell migration and wound closure but was dispensable for cell proliferation. In both in vivo and in vitro settings, IKKβ was required for optimal activation of NF-κB and p38 signaling in corneal epithelial cells, and p38 activation is likely mediated through formation of an IKKβ-p38 protein complex. Thus, our studies in corneal epithelium reveal a previously un-recognized role for IKKβ in the control of epithelial cell motility and wound healing.http://europepmc.org/articles/PMC3022035?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Liang Chen
Qinghang Meng
Winston Kao
Ying Xia
spellingShingle Liang Chen
Qinghang Meng
Winston Kao
Ying Xia
IκB kinase β regulates epithelium migration during corneal wound healing.
PLoS ONE
author_facet Liang Chen
Qinghang Meng
Winston Kao
Ying Xia
author_sort Liang Chen
title IκB kinase β regulates epithelium migration during corneal wound healing.
title_short IκB kinase β regulates epithelium migration during corneal wound healing.
title_full IκB kinase β regulates epithelium migration during corneal wound healing.
title_fullStr IκB kinase β regulates epithelium migration during corneal wound healing.
title_full_unstemmed IκB kinase β regulates epithelium migration during corneal wound healing.
title_sort iκb kinase β regulates epithelium migration during corneal wound healing.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description The IKKβ is known to regulate transcription factor NF-κB activation leading to inflammatory responses. Recent gene knockout studies have shown that IKKβ can orchestrate local inflammatory responses and regulate homeostasis of epithelial tissues. To investigate whether IKKβ has an intrinsic role in epithelial cells, we established an in vivo system in the immune privileged corneal epithelium. We generated triple transgenic Krt12(rtTA/rtTAt)/tet-O-Cre/Ikkβ(F/F) (Ikkβ(ΔCE/ΔCE)) mice by crossing the Krt12-rtTA knock-in mice, which express the reverse tetracycline transcription activator in corneal epithelial cells, with the tet-O-Cre and Ikkβ(F/F) mice. Doxycycline-induced IKKβ ablation occurred in corneal epithelial cells of triple transgenic Ikkβ(ΔCE/ΔCE) mice, but loss of IKKβ did not cause ocular abnormalities in fetal development and postnatal maintenance. Instead, loss of IKKβ significantly delayed healing of corneal epithelial debridement without affecting cell proliferation, apoptosis or macrophage infiltration. In vitro studies with human corneal epithelial cells (HCEpi) also showed that IKKβ was required for cytokine-induced cell migration and wound closure but was dispensable for cell proliferation. In both in vivo and in vitro settings, IKKβ was required for optimal activation of NF-κB and p38 signaling in corneal epithelial cells, and p38 activation is likely mediated through formation of an IKKβ-p38 protein complex. Thus, our studies in corneal epithelium reveal a previously un-recognized role for IKKβ in the control of epithelial cell motility and wound healing.
url http://europepmc.org/articles/PMC3022035?pdf=render
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