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Yoshiko Munemasa

Explore the profile of Yoshiko Munemasa including associated specialties, affiliations and a list of published articles. Areas
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Articles 10
Citations 207
Followers 0
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Recent Articles
1.
Tochio N, Umehara T, Munemasa Y, Suzuki T, Sato S, Tsuda K, et al.
J Mol Biol . 2010 Jun; 401(1):97-114. PMID: 20538007
Eukaryotic gene expression is regulated by histone deposition onto and eviction from nucleosomes, which are mediated by several chromatin-modulating factors. Among them, histone chaperones are key factors that facilitate nucleosome...
2.
Matsumura T, Suzuki T, Aizawa K, Sawaki D, Munemasa Y, Ishida J, et al.
J Biol Chem . 2009 Oct; 284(51):35861-71. PMID: 19837676
Abnormal transforming growth factor-beta (TGF-beta) signaling is a critical contributor to the pathogenesis of various human diseases ranging from tissue fibrosis to tumor formation. Excessive TGF-beta signaling stimulates fibrotic responses....
3.
Suzuki T, Sawaki D, Aizawa K, Munemasa Y, Matsumura T, Ishida J, et al.
J Biol Chem . 2009 Feb; 284(14):9549-57. PMID: 19189969
Krüppel-like factor 5 (KLF5), originally isolated as a regulator of phenotypic modulation of vascular smooth muscle cells, induces pathological cell growth and is expressed in the neointima. Although induction of...
4.
Kada N, Suzuki T, Aizawa K, Munemasa Y, Matsumura T, Sawaki D, et al.
FEBS Lett . 2008 May; 582(12):1755-60. PMID: 18466769
We show that transcription factor Krüppel-like factor 5 (KLF5), which is important in cardiovascular remodeling, interacts with retinoic acid receptor-alpha (RARalpha) to regulate downstream gene expression. Here, we investigated whether...
5.
Munemasa Y, Suzuki T, Aizawa K, Miyamoto S, Imai Y, Matsumura T, et al.
Mol Cell Biol . 2007 Nov; 28(3):1171-81. PMID: 18039846
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...
6.
Kada N, Suzuki T, Aizawa K, Matsumura T, Ishibashi N, Suzuki N, et al.
Arterioscler Thromb Vasc Biol . 2007 May; 27(7):1535-41. PMID: 17478760
Objectives: Acyclic retinoid (ACR) is a synthetic retinoid with a high safety profile that has been pursued with high expectations for therapeutic use in prevention (recurrence) and treatment of malignancies....
7.
Suzuki T, Nishi T, Nagino T, Sasaki K, Aizawa K, Kada N, et al.
J Biol Chem . 2007 Feb; 282(13):9895-9901. PMID: 17283079
Krüppel-like factor 5 (KLF5) is a transcription factor important in regulation of the cardiovascular response to external stress. KLF5 regulates pathological cell growth, and its acetylation is important for this...
8.
Matsumura T, Suzuki T, Kada N, Aizawa K, Munemasa Y, Nagai R
Biochem Biophys Res Commun . 2006 Nov; 351(4):965-71. PMID: 17097053
Protein profiling would aid in better understanding the pathophysiology of metabolic disease. Here, we report on differential proteomic analysis using an animal model of diabetes mellitus and associated metabolic disorders...
9.
Matsumura T, Suzuki T, Aizawa K, Munemasa Y, Muto S, Horikoshi M, et al.
J Biol Chem . 2005 Jan; 280(13):12123-9. PMID: 15668237
Transcription is regulated by a network of transcription factors and related cofactors that act in concert with the general transcription machinery. Elucidating their underlying interactions is important for understanding the...
10.
Aizawa K, Suzuki T, Kada N, Ishihara A, Kawai-Kowase K, Matsumura T, et al.
J Biol Chem . 2003 Oct; 279(1):70-6. PMID: 14573617
The transcription factor Krüppel-like factor 5 (KLF5) and its genetically downstream target gene platelet-derived growth factor-A (PDGF-A) chain are key factors in regulation of cardiovascular remodeling in response to stress....