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Caveolin 3 suppresses phosphorylation-dependent activation of sarcolemmal nNOS.
Ohsawa, Yutaka; Ohtsubo, Hideaki; Saito, Yoshihiko; Nishimatsu, Shin-Ichiro; Hagiwara, Hiroki; Murakami, Tatsufumi; Nishino, Ichizo; Sunada, Yoshihide.
Afiliación
  • Ohsawa Y; Department of Neurology, Kawasaki Medical School, 577 Matsushima, Kurashiki, Okayama, 701-0192, Japan. Electronic address: yosawa@med.kawasaki-m.ac.jp.
  • Ohtsubo H; Department of Neurology, Kawasaki Medical School, 577 Matsushima, Kurashiki, Okayama, 701-0192, Japan. Electronic address: hideaki_ohtsubo@yahoo.co.jp.
  • Saito Y; Department of Neuromuscular Research, National Institute of Neuroscience, NCNP, 4-1-1 Ogawahigashi, Kodaira, Tokyo, 187-8551, Japan. Electronic address: saito-ys@ncnp.go.jp.
  • Nishimatsu SI; Department of Natural Sciences, Kawasaki Medical School, 577 Matsushima, Kurashiki, Okayama, 701-0192, Japan. Electronic address: shin@med.kawasaki-m.ac.jp.
  • Hagiwara H; Department of Medical Science, Teikyo University of Science, 2-11-1 Kaga, Adachi-ku, Tokyo, 120-0045, Japan. Electronic address: hagi@ntu.ac.jp.
  • Murakami T; Department of Neurology, Kawasaki Medical School, 577 Matsushima, Kurashiki, Okayama, 701-0192, Japan. Electronic address: tatsum@med.kawasaki-m.ac.jp.
  • Nishino I; Department of Neuromuscular Research, National Institute of Neuroscience, NCNP, 4-1-1 Ogawahigashi, Kodaira, Tokyo, 187-8551, Japan. Electronic address: nishino@ncnp.go.jp.
  • Sunada Y; Department of Neurology, Kawasaki Medical School, 577 Matsushima, Kurashiki, Okayama, 701-0192, Japan. Electronic address: ysunada@med.kawasaki-m.ac.jp.
Biochem Biophys Res Commun ; 628: 84-90, 2022 11 05.
Article en En | MEDLINE | ID: mdl-36084555
ABSTRACT
Mutations of the caveolin 3 gene cause autosomal dominant limb-girdle muscular dystrophy (LGMD)1C. In mice, overexpression of mutant caveolin 3 leads to loss of caveolin 3 and results in myofiber hypotrophy in association with activation of neuronal nitric oxide synthase (nNOS) at the sarcolemma. Here, we show that caveolin 3 directly bound to nNOS and suppressed its phosphorylation-dependent activation at a specific residue, Ser1412 in the nicotinamide adenine dinucleotide phosphate (NADPH)-flavin adenine dinucleotide (FAD) module near the C-terminus of the reduction domain, in vitro. Constitutively active nNOS enhanced myoblast fusion, but not myogenesis, in vitro. Phosphorylation-dependent activation of nNOS occurred in muscles from caveolin 3-mutant mice and LGMD1C patients. Mating with nNOS-mutant mice exacerbated myofiber hypotrophy in the caveolin 3-mutant mice. In nNOS-mutant mice, regenerating myofibers after cardiotoxin injury became hypotrophic with reduced myoblast fusion. Administration of NO donor increased myofiber size and the number of myonuclei in the caveolin 3-mutant mice. Exercise also increased myofiber size accompanied by phosphorylation-dependent activation of nNOS in wild-type and caveolin 3-mutant mice. These data indicate that caveolin 3 inhibits phosphorylation-dependent activation of nNOS, which leads to myofiber hypertrophy via enhancing myoblast fusion. Hypertrophic signaling by nNOS phosphorylation could act in a compensatory manner in caveolin 3-deficient muscles.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Óxido Nítrico Sintasa de Tipo I / Caveolina 3 / Flavina-Adenina Dinucleótido Límite: Animals Idioma: En Revista: Biochem Biophys Res Commun Año: 2022 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Óxido Nítrico Sintasa de Tipo I / Caveolina 3 / Flavina-Adenina Dinucleótido Límite: Animals Idioma: En Revista: Biochem Biophys Res Commun Año: 2022 Tipo del documento: Article