Adult cardiac expression of the activating transcription factor 3, ATF3, promotes ventricular hypertrophy.

Cardiac hypertrophy is an adaptive response to various mechanophysical and pathophysiological stresses. However, when chronic stress is sustained, the beneficial response turns into a maladaptive process that eventually leads to heart failure. Although major advances in the treatment of patients hav...

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Main Authors: Lilach Koren, Ofer Elhanani, Izhak Kehat, Tsonwin Hai, Ami Aronheim
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3707568?pdf=render
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spelling doaj-dee0cff1d0d44d4abaf166bb99d65a692020-11-25T02:29:05ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0187e6839610.1371/journal.pone.0068396Adult cardiac expression of the activating transcription factor 3, ATF3, promotes ventricular hypertrophy.Lilach KorenOfer ElhananiIzhak KehatTsonwin HaiAmi AronheimCardiac hypertrophy is an adaptive response to various mechanophysical and pathophysiological stresses. However, when chronic stress is sustained, the beneficial response turns into a maladaptive process that eventually leads to heart failure. Although major advances in the treatment of patients have reduced mortality, there is a dire need for novel treatments for cardiac hypertrophy. Accordingly, considerable efforts are being directed towards developing mice models and understanding the processes that lead to cardiac hypertrophy. A case in point is ATF3, an immediate early transcription factor whose expression is induced in various cardiac stress models but has been reported to have conflicting functional significance in hypertrophy. To address this issue, we generated a transgenic mouse line with tetracycline-regulated ATF3 cardiac expression. These mice allowed us to study the consequence of ATF3 expression in the embryo or during the adult period, thus distinguishing the effect of ATF3 on development versus pathogenesis of cardiac dysfunction. Importantly, ATF3 expression in adult mice resulted in rapid ventricles hypertrophy, heart dysfunction, and fibrosis. When combined with a phenylephrine-infusion pressure overload model, the ATF3 expressing mice displayed a severe outcome and heart dysfunction. In a complementary approach, ATF3 KO mice displayed a lower level of heart hypertrophy in the same pressure overload model. In summary, ectopic expression of ATF3 is sufficient to promote cardiac hypertrophy and exacerbates the deleterious effect of chronic pressure overload; conversely, ATF3 deletion protects the heart. Therefore, ATF3 may serve as an important drug target to reduce the detrimental consequences of heart hypertrophy.http://europepmc.org/articles/PMC3707568?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Lilach Koren
Ofer Elhanani
Izhak Kehat
Tsonwin Hai
Ami Aronheim
spellingShingle Lilach Koren
Ofer Elhanani
Izhak Kehat
Tsonwin Hai
Ami Aronheim
Adult cardiac expression of the activating transcription factor 3, ATF3, promotes ventricular hypertrophy.
PLoS ONE
author_facet Lilach Koren
Ofer Elhanani
Izhak Kehat
Tsonwin Hai
Ami Aronheim
author_sort Lilach Koren
title Adult cardiac expression of the activating transcription factor 3, ATF3, promotes ventricular hypertrophy.
title_short Adult cardiac expression of the activating transcription factor 3, ATF3, promotes ventricular hypertrophy.
title_full Adult cardiac expression of the activating transcription factor 3, ATF3, promotes ventricular hypertrophy.
title_fullStr Adult cardiac expression of the activating transcription factor 3, ATF3, promotes ventricular hypertrophy.
title_full_unstemmed Adult cardiac expression of the activating transcription factor 3, ATF3, promotes ventricular hypertrophy.
title_sort adult cardiac expression of the activating transcription factor 3, atf3, promotes ventricular hypertrophy.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Cardiac hypertrophy is an adaptive response to various mechanophysical and pathophysiological stresses. However, when chronic stress is sustained, the beneficial response turns into a maladaptive process that eventually leads to heart failure. Although major advances in the treatment of patients have reduced mortality, there is a dire need for novel treatments for cardiac hypertrophy. Accordingly, considerable efforts are being directed towards developing mice models and understanding the processes that lead to cardiac hypertrophy. A case in point is ATF3, an immediate early transcription factor whose expression is induced in various cardiac stress models but has been reported to have conflicting functional significance in hypertrophy. To address this issue, we generated a transgenic mouse line with tetracycline-regulated ATF3 cardiac expression. These mice allowed us to study the consequence of ATF3 expression in the embryo or during the adult period, thus distinguishing the effect of ATF3 on development versus pathogenesis of cardiac dysfunction. Importantly, ATF3 expression in adult mice resulted in rapid ventricles hypertrophy, heart dysfunction, and fibrosis. When combined with a phenylephrine-infusion pressure overload model, the ATF3 expressing mice displayed a severe outcome and heart dysfunction. In a complementary approach, ATF3 KO mice displayed a lower level of heart hypertrophy in the same pressure overload model. In summary, ectopic expression of ATF3 is sufficient to promote cardiac hypertrophy and exacerbates the deleterious effect of chronic pressure overload; conversely, ATF3 deletion protects the heart. Therefore, ATF3 may serve as an important drug target to reduce the detrimental consequences of heart hypertrophy.
url http://europepmc.org/articles/PMC3707568?pdf=render
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