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Dive into the research topics where Saku Miyamoto is active.

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Featured researches published by Saku Miyamoto.


Nature Medicine | 2002

Krüppel-like zinc-finger transcription factor KLF5/BTEB2 is a target for angiotensin II signaling and an essential regulator of cardiovascular remodeling.

Takayuki Shindo; Ichiro Manabe; Yasushi Fukushima; Kazuyuki Tobe; Kenichi Aizawa; Saku Miyamoto; Keiko Kawai-Kowase; Nobuo Moriyama; Yasushi Imai; Hayato Kawakami; Hiroaki Nishimatsu; Takashi Ishikawa; Toru Suzuki; Hiroyuki Morita; Koji Maemura; Masataka Sata; Yasunobu Hirata; Masayuki Komukai; Hiroyuki Kagechika; Takashi Kadowaki; Masahiko Kurabayashi; Ryozo Nagai

We recently isolated a Krüppel-like zinc-finger transcription factor 5 (KLF5; also known as BTEB2 and IKLF), which is markedly induced in activated vascular smooth-muscle cells and fibroblasts. Here we describe our analysis of the in vivo function of KLF5 using heterozygous KLF5-knockout mice (Klf5+/−). In response to external stress, Klf5+/− mice showed diminished levels of arterial-wall thickening, angiogenesis, cardiac hypertrophy and interstitial fibrosis. Also, angiotensin II induced expression of KLF5, which in turn activated platelet-derived growth factor-A (PDGF-A) and transforming growth factor-β (TGF-β) expression. In addition, we determined that KLF5 interacted with the retinoic-acid receptor (RAR), that synthetic RAR ligands modulated KLF5 transcriptional activity, and that in vivo administration of RAR ligands affected stress responses in the cardiovascular system in a KLF5-dependent manner. KLF5 thus seems to be a key element linking external stress and cardiovascular remodeling.


Molecular and Cellular Biology | 2003

Positive and Negative Regulation of the Cardiovascular Transcription Factor KLF5 by p300 and the Oncogenic Regulator SET through Interaction and Acetylation on the DNA-Binding Domain

Saku Miyamoto; Toru Suzuki; Shinsuke Muto; Kenichi Aizawa; Akatsuki Kimura; Yoshiko Mizuno; Tomoko Nagino; Yasushi Imai; Naruhiko Adachi; Masami Horikoshi; Ryozo Nagai

ABSTRACT Here we show a novel pathway of transcriptional regulation of a DNA-binding transcription factor by coupled interaction and modification (e.g., acetylation) through the DNA-binding domain (DBD). The oncogenic regulator SET was isolated by affinity purification of factors interacting with the DBD of the cardiovascular transcription factor KLF5. SET negatively regulated KLF5 DNA binding, transactivation, and cell-proliferative activities. Down-regulation of the negative regulator SET was seen in response to KLF5-mediated gene activation. The coactivator/acetylase p300, on the other hand, interacted with and acetylated KLF5 DBD, and activated its transcription. Interestingly, SET inhibited KLF5 acetylation, and a nonacetylated mutant of KLF5 showed reduced transcriptional activation and cell growth complementary to the actions of SET. These findings suggest a new pathway for regulation of a DNA-binding transcription factor on the DBD through interaction and coupled acetylation by two opposing regulatory factors of a coactivator/acetylase and a negative cofactor harboring activity to inhibit acetylation.


Annals of the New York Academy of Sciences | 2008

Phenotypic Modulation of Vascular Smooth Muscle Cells

Ryozo Nagai; Toru Suzuki; Kenichi Aizawa; Saku Miyamoto; Toshihiro Amaki; Keiko Kawai-Kowase; Kenichi Sekiguchi; Masahiko Kurabayashi

Abstract: The smooth muscle myosin heavy chain (MHC) gene and its isoforms are excellent molecular markers that reflect smooth muscle phenotypes. The SMemb/Nonmuscle Myosin Heavy Chain B (NMHC‐B) is a distinct MHC gene expressed predominantly in phenotypically modulated SMCs (synthetic‐type SMC). To dissect the molecular mechanisms governing phenotypic modulation of SMCs, we analyzed the transcriptional regulatory mechanisms underlying expression of the SMemb gene. We previously reported two transcription factors, BTEB2/IKLF and Hex, which transactivate the SMemb gene promoter based on the transient reporter transfection assays. BTEB2/IKLF is a zinc finger transcription factor, whereas Hex is a homeobox protein. BTEB2/IKLF expression in SMCs is downregulated with vascular development in vivo but upregulated in cultured SMCs and in neointima in response to vascular injury after balloon angioplasty. BTEB2/IKLF and Hex activate not only the SMemb gene but also other genes activated in synthetic SMCs including plasminogen activator inhibitor‐1 (PAI‐1), iNOS, PDGF‐A, Egr‐1, and VEGF receptors. Mitogenic stimulation activates BTEB2/IKLF gene expression through MEK1 and Egr‐1. Elevation of intracellular cAMP is also important in phenotypic modulation of SMCs, because the SMemb promoter is activated under cooperatively by cAMP‐response element binding protein (CREB) and Hex.


Molecular and Cellular Biology | 2008

Promoter Region-Specific Histone Incorporation by the Novel Histone Chaperone ANP32B and DNA-Binding Factor KLF5

Yoshiko Munemasa; Toru Suzuki; Kenichi Aizawa; Saku Miyamoto; Yasushi Imai; Takayoshi Matsumura; Masami Horikoshi; Ryozo Nagai

ABSTRACT Regulation of chromatin in eukaryotic transcription requires histone-modifying enzymes, nucleosome remodeling complexes, and histone chaperones. Specific regulation of histone incorporation/eviction by histone chaperones on the promoter (e.g., region specific) is still poorly understood. In the present study, we show that direct and functional interaction of histone chaperone and DNA-binding transcription factor leads to promoter region-specific histone incorporation and inhibition of histone acetylation. We report here that the DNA-binding transcription factor Krüppel-like factor 5 (KLF5) interacts with the novel histone chaperone acidic nuclear phosphoprotein 32B (ANP32B), leading to transcriptional repression of a KLF5-downstream gene. We further show that recruitment of ANP32B onto the promoter region requires KLF5 and results in promoter region-specific histone incorporation and inhibition of histone acetylation by ANP32B. Extracellular stimulus (e.g., phorbol ester) regulates this mechanism in the cell. Collectively, we have identified a novel histone chaperone, ANP32B, and through analysis of the actions of this factor show a new mechanism of promoter region-specific transcriptional regulation at the chromatin level as mediated by the functional interaction between histone chaperone and DNA-binding transcription factor.


Journal of Biological Chemistry | 2003

Functional Interaction of the DNA-binding Transcription Factor Sp1 through Its DNA-binding Domain with the Histone Chaperone TAF-I

Toru Suzuki; Shinsuke Muto; Saku Miyamoto; Kenichi Aizawa; Masami Horikoshi; Ryozo Nagai


International Congress Series | 2004

KLF5/BTEB2, a Krüppel-like zinc-finger type transcription factor, mediates smooth muscle cell activation as well as cardiovascular remodeling

Ryozo Nagai; Takayuki Shindo; Ichiro Manabe; Toru Suzuki; Shinsuke Muto; Saku Miyamoto; Kenichi Aizawa; Masahiko Kurabayashi


Japanese Circulation Journal-english Edition | 2002

Transcriptional activation by acetylation of the transcription factor IKLF/BTEB2 by p300

Shinsuke Muto; Toru Suzuki; Kenichi Aizawa; Saku Miyamoto; Yasushi Imai; Toshihiro Amaki; Keiko Fukino; Yoshiko Mizuno; Ichiro Manabe; Takayuki Shindo; Koji Maemura; Ryozo Nagai


Japanese Circulation Journal-english Edition | 2004

OE-102 Positive and negative regulation of the cardiovascular transcription factor KLF5 by p300 and SET through interaction and acetylation(Molecular Biology, Vascular 1 (H) : OE12)(Oral Presentation (English))

Toru Suzuki; Saku Miyamoto; Shinsuke Muto; Kenichi Aizawa; Akatsuki Kimura; Yoshiko Mizuno; Tomoko Nagino; Yasushi Imai; Naruhiko Adachi; Takayoshi Matsumura; Kana Sasaki; Nanae Kada; Yoshiko Munemasa; Masami Horikoshi; Ryozo Nagai


Cardiovascular Pathology | 2004

POSITIVE AND NEGATIVE REGULATION OF THE CARDIOVASCULAR TRANSCRIPTION FACTOR KLF5 BY THE COACTIVATOR/ACETYLASE P300 AND THE ONCOGENIC REGULATOR/NUCLEOSOME ASSEMBLY FACTOR SET BY INTERACTION AND ACETYLATION—IMPLICATIONS FOR TRANSCRIPTIONAL REGULATION OF GENE EXPRESSION AT THE CHROMATIN LEVEL

Toru Suzuki; Saku Miyamoto; Shinsuke Muto; Kenichi Aizawa; Masami Horikoshi; Ryozo Nagai


Japanese Circulation Journal-english Edition | 2003

KLF5 not only Synergistically Activates PDGF-A Gene with NFκ B but also Accelerates SMC Proliferation

Kenichi Aizawa; Toru Suzuki; Nanae Kada; Shinsuke Mutou; Saku Miyamoto; Tomoko Nagino; Yoshiko Mizuno; Toshihiro Amaki; Keiko Fukino; Yasushi Imai; Ichiro Manabe; Takayuki Shindou; Kouji Maemura; Keiko Kowase; Masahiko Kurabayashi; Ryozo Nagai

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Ryozo Nagai

Jichi Medical University

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Toru Suzuki

Tokyo University of Marine Science and Technology

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Yasushi Imai

Jichi Medical University

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