Nrf2 is involved in maintaining hepatocyte identity during liver regeneration.

Nrf2, a central regulator of the cellular defense against oxidative stress and inflammation, participates in modulating hepatocyte proliferation during liver regeneration. It is not clear, however, whether Nrf2 regulates hepatocyte growth, an important cellular mechanism to regain the lost liver mas...

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Main Authors: Yuhong Zou, Joonyong Lee, Shashank Manohar Nambiar, Min Hu, Wenjuan Rui, Qi Bao, Jefferson Y Chan, Guoli Dai
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4164664?pdf=render
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spelling doaj-260306a0524b458696c3a6e8605fb5b32020-11-25T02:33:38ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0199e10742310.1371/journal.pone.0107423Nrf2 is involved in maintaining hepatocyte identity during liver regeneration.Yuhong ZouJoonyong LeeShashank Manohar NambiarMin HuWenjuan RuiQi BaoJefferson Y ChanGuoli DaiNrf2, a central regulator of the cellular defense against oxidative stress and inflammation, participates in modulating hepatocyte proliferation during liver regeneration. It is not clear, however, whether Nrf2 regulates hepatocyte growth, an important cellular mechanism to regain the lost liver mass after partial hepatectomy (PH). To determine this, various analyses were performed in wild-type and Nrf2-null mice following PH. We found that, at 60 h post-PH, the vast majority of hepatocytes lacking Nrf2 reduced their sizes, activated hepatic progenitor markers (CD133, TWEAK receptor, and trefoil factor family 3), depleted HNF4α protein, and downregulated the expression of a group of genes critical for their functions. Thus, the identity of hepatocytes deficient in Nrf2 was transiently but massively impaired in response to liver mass loss. This event was associated with the coupling of protein depletion of hepatic HNF4α, a master regulator of hepatocyte differentiation, and concomitant inactivation of hepatic Akt1 and p70S6K, critical hepatocyte growth signaling molecules. We conclude that Nrf2 participates in maintaining newly regenerated hepatocytes in a fully differentiated state by ensuring proper regulation of HNF4α, Akt1, and p70S6K during liver regeneration.http://europepmc.org/articles/PMC4164664?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Yuhong Zou
Joonyong Lee
Shashank Manohar Nambiar
Min Hu
Wenjuan Rui
Qi Bao
Jefferson Y Chan
Guoli Dai
spellingShingle Yuhong Zou
Joonyong Lee
Shashank Manohar Nambiar
Min Hu
Wenjuan Rui
Qi Bao
Jefferson Y Chan
Guoli Dai
Nrf2 is involved in maintaining hepatocyte identity during liver regeneration.
PLoS ONE
author_facet Yuhong Zou
Joonyong Lee
Shashank Manohar Nambiar
Min Hu
Wenjuan Rui
Qi Bao
Jefferson Y Chan
Guoli Dai
author_sort Yuhong Zou
title Nrf2 is involved in maintaining hepatocyte identity during liver regeneration.
title_short Nrf2 is involved in maintaining hepatocyte identity during liver regeneration.
title_full Nrf2 is involved in maintaining hepatocyte identity during liver regeneration.
title_fullStr Nrf2 is involved in maintaining hepatocyte identity during liver regeneration.
title_full_unstemmed Nrf2 is involved in maintaining hepatocyte identity during liver regeneration.
title_sort nrf2 is involved in maintaining hepatocyte identity during liver regeneration.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Nrf2, a central regulator of the cellular defense against oxidative stress and inflammation, participates in modulating hepatocyte proliferation during liver regeneration. It is not clear, however, whether Nrf2 regulates hepatocyte growth, an important cellular mechanism to regain the lost liver mass after partial hepatectomy (PH). To determine this, various analyses were performed in wild-type and Nrf2-null mice following PH. We found that, at 60 h post-PH, the vast majority of hepatocytes lacking Nrf2 reduced their sizes, activated hepatic progenitor markers (CD133, TWEAK receptor, and trefoil factor family 3), depleted HNF4α protein, and downregulated the expression of a group of genes critical for their functions. Thus, the identity of hepatocytes deficient in Nrf2 was transiently but massively impaired in response to liver mass loss. This event was associated with the coupling of protein depletion of hepatic HNF4α, a master regulator of hepatocyte differentiation, and concomitant inactivation of hepatic Akt1 and p70S6K, critical hepatocyte growth signaling molecules. We conclude that Nrf2 participates in maintaining newly regenerated hepatocytes in a fully differentiated state by ensuring proper regulation of HNF4α, Akt1, and p70S6K during liver regeneration.
url http://europepmc.org/articles/PMC4164664?pdf=render
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