Focused Proteomics Revealed a Novel Rho-kinase Signaling Pathway in the Heart
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Published:2016
Issue:2
Volume:41
Page:105-120
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ISSN:0386-7196
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Container-title:Cell Structure and Function
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language:en
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Short-container-title:Cell Struct. Funct.
Author:
Yura Yoshimitsu12, Amano Mutsuki1, Takefuji Mikito2, Bando Tomohiro1, Suzuki Kou1, Kato Katsuhiro12, Hamaguchi Tomonari1, Hasanuzzaman Shohag Md.1, Takano Tetsuya1, Funahashi Yasuhiro1, Nakamuta Shinichi1, Kuroda Keisuke1, Nishioka Tomoki1, Murohara Toyoaki2, Kaibuchi Kozo1
Affiliation:
1. Department of Cell Pharmacology, Graduate School of Medicine, Nagoya University 2. Department of Cardiology, Graduate School of Medicine, Nagoya University
Publisher
Japan Society for Cell Biology
Subject
Cell Biology,Molecular Biology,Physiology,General Medicine
Reference32 articles.
1. Amano, M., Mukai, H., Ono, Y., Chihara, K., Matsui, T., Hamajima, Y., Okawa, K., Iwamatsu, A., and Kaibuchi, K. 1996. Identification of a putative target for Rho as the serine-threonine kinase protein kinase N. Science (New York, NY), 271: 648–650. 2. Amano, M., Chihara, K., Nakamura, N., Kaneko, T., Matsuura, Y., and Kaibuchi, K. 1999. The COOH terminus of Rho-kinase negatively regulates rho-kinase activity. J. Biol. Chem., 274: 32418–32424. 3. Amano, M., Nakayama, M., and Kaibuchi, K. 2010a. Rho-kinase/ROCK: A key regulator of the cytoskeleton and cell polarity. Cytoskeleton (Hoboken, NJ), 67: 545–554. 4. Amano, M., Tsumura, Y., Taki, K., Harada, H., Mori, K., Nishioka, T., Kato, K., Suzuki, T., Nishioka, Y., Iwamatsu, A., and Kaibuchi, K. 2010b. A proteomic approach for comprehensively screening substrates of protein kinases such as Rho-kinase. PLoS ONE, 5: e8704. 5. Amano, M., Hamaguchi, T., Shohag, M.H., Kozawa, K., Kato, K., Zhang, X., Yura, Y., Matsuura, Y., Kataoka, C., Nishioka, T., and Kaibuchi, K. 2015. Kinase-interacting substrate screening is a novel method to identify kinase substrates. J. Cell Biol., 209: 895–912.
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