Literature DB >> 17095722

Upregulation of heat shock transcription factor 1 plays a critical role in adaptive cardiac hypertrophy.

Masaya Sakamoto1, Tohru Minamino, Haruhiro Toko, Yosuke Kayama, Yunzeng Zou, Masanori Sano, Eiichi Takaki, Teruhiko Aoyagi, Katsuyoshi Tojo, Naoko Tajima, Akira Nakai, Hiroyuki Aburatani, Issei Komuro.   

Abstract

Exercise-induced cardiac hypertrophy has been reported to have better prognosis than pressure overload-induced cardiac hypertrophy. Cardiac hypertrophy induced by exercise was associated with less cardiac fibrosis and better systolic function, suggesting that the adaptive mechanisms may exist in exercise-induced hypertrophy. Here, we showed a critical role of heat shock transcription factor 1 (HSF1), an important transcription factor for heat shock proteins, in the adaptive mechanism of cardiac hypertrophy. We examined expression of 8800 genes in the heart of exercise-induced hypertrophy model using DNA chip technique and compared with pressure overload-induced hypertrophy. Expression of HSF1 and its target molecule heat shock proteins was significantly upregulated in the heart by exercise but not by chronic pressure overload. Constitutive activation of HSF1 in the heart significantly ameliorated death of cardiomyocytes and cardiac fibrosis and thereby prevented cardiac dysfunction as well as hypertrophy induced by chronic pressure overload. Conversely, decreased activity of HSF1 in the heart promoted cardiac dysfunction in response to exercise, a load that normally leads to adaptive hypertrophy with preserved systolic function. Likewise, cardiac function was significantly impaired from the early phase of pressure overload, when HSF1 activation was inhibited. These results suggest that HSF1 plays a critical role in the transition between adaptive and maladaptive hypertrophy.

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Year:  2006        PMID: 17095722     DOI: 10.1161/01.RES.0000252345.80198.97

Source DB:  PubMed          Journal:  Circ Res        ISSN: 0009-7330            Impact factor:   17.367


  33 in total

Review 1.  Hold me tight: Role of the heat shock protein family of chaperones in cardiac disease.

Authors:  Monte S Willis; Cam Patterson
Journal:  Circulation       Date:  2010-10-26       Impact factor: 29.690

2.  The upper limit of physiological cardiac hypertrophy in elite male and female athletes in China.

Authors:  Biao Sun; Ji Zheng Ma; Yong Hong Yong; Yuan Yuan Lv
Journal:  Eur J Appl Physiol       Date:  2007-07-28       Impact factor: 3.078

3.  Analysis of HSF4 binding regions reveals its necessity for gene regulation during development and heat shock response in mouse lenses.

Authors:  Mitsuaki Fujimoto; Koji Oshima; Toyohide Shinkawa; Bei Bei Wang; Sachiye Inouye; Naoki Hayashida; Ryosuke Takii; Akira Nakai
Journal:  J Biol Chem       Date:  2008-08-27       Impact factor: 5.157

4.  Characterization of hsp27 kinases activated by elevated aortic pressure in heart.

Authors:  Benoit Boivin; Maya Khairallah; Raymond Cartier; Bruce G Allen
Journal:  Mol Cell Biochem       Date:  2012-08-10       Impact factor: 3.396

5.  Peroxisome proliferator-activated receptor-γ coactivator 1 α1 induces a cardiac excitation-contraction coupling phenotype without metabolic remodelling.

Authors:  Maija Mutikainen; Tomi Tuomainen; Nikolay Naumenko; Jenni Huusko; Boris Smirin; Svetlana Laidinen; Krista Kokki; Heidi Hynynen; Seppo Ylä-Herttuala; Merja Heinäniemi; Jorge L Ruas; Pasi Tavi
Journal:  J Physiol       Date:  2016-12-01       Impact factor: 5.182

6.  Heat shock protein 25-enriched plasma transfusion preconditions the heart against doxorubicin-induced dilated cardiomyopathy in mice.

Authors:  Karthikeyan Krishnamurthy; Ragu Kanagasabai; Lawrence J Druhan; Govindasamy Ilangovan
Journal:  J Pharmacol Exp Ther       Date:  2012-03-21       Impact factor: 4.030

7.  Heat shock transcription factor 1 inhibits H₂O₂-induced cardiomyocyte death through suppression of high-mobility group box 1.

Authors:  Ying Yu; Ming Liu; Lei Zhang; Quan Cao; Peipei Zhang; Hong Jiang; Yunzeng Zou; Junbo Ge
Journal:  Mol Cell Biochem       Date:  2012-01-15       Impact factor: 3.396

8.  Dynamic transcription factor activity networks in response to independently altered mechanical and adhesive microenvironmental cues.

Authors:  Beatriz Peñalver Bernabé; Seungjin Shin; Peter D Rios; Linda J Broadbelt; Lonnie D Shea; Stephanie K Seidlits
Journal:  Integr Biol (Camb)       Date:  2016-07-29       Impact factor: 2.192

Review 9.  Rescuing cardiac malfunction: the roles of the chaperone-like small heat shock proteins.

Authors:  Eunhee Chung; Leslie A Leinwand
Journal:  Circ Res       Date:  2008-12-05       Impact factor: 17.367

10.  A novel mouse HSF3 has the potential to activate nonclassical heat-shock genes during heat shock.

Authors:  Mitsuaki Fujimoto; Naoki Hayashida; Takuma Katoh; Kouji Oshima; Toyohide Shinkawa; Ramachandran Prakasam; Ke Tan; Sachiye Inouye; Ryosuke Takii; Akira Nakai
Journal:  Mol Biol Cell       Date:  2009-10-28       Impact factor: 4.138

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