ウマ(サラブレッド)マイオスタチンcDNAのクローニングと血清中マイオスタチン前駆タンパク質の検出
スポンサーリンク
概要
- 論文の詳細を見る
Growth/Differentiation Factor 8, or GDF-8, is a member of the TGF-β family and is expressed specifically in myogenic precursor cells of the myotome during development as well as in adult axial and paraxial muscles of the mouse. It acts as a negative regulator of skeletal muscle mass, and is known as myostatin. As a part of our studies to elucidate mechanisms underlying the growth of skeletal muscle mass due to physical training in mammals including horses and humans, we isolated and cloned myostatin cDNA from equine (Thoroughbred) skeletal muscles by an RT-PCR method. The base sequence of the entire coding region of equine myostatin cDNA (DDBJ accession no. AB033541) exhibited a high degree of homology to those of other species so far reported. In the deduced amino acid sequence, 4 amino acid positions were unique to the equine myostatin, i. e., Val15 instead of Met, Leu18 instead of Val or Ala, Ala201 instead of Thr, Arg244 instead of Gly or Glu in other species. Western blot analysis of the equine skeletal muscles using anti-myostatin antibody, yielded 3 immunoreactive bands, i. e., 26, 45 and 50 kDa. The band at approximately 26 kDa probably represents mature myostatin and another at approximately 50 kDa corresponds in size to the unprocessed precursor myostatin proteins reported in the literature. Western blot analysis of equine sera of 2 independent breeds, Thoroughbred and Kiso-uma, revealed the possible presence of precursor myostatin proteins at relatively high levels. The molecular identity and the biological significance of serum myostatin immunoreactivities remain to be clarified.
- 日本繁殖生物学会の論文
著者
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MUKOYAMA Harutaka
Laboratory of Animal Physiology, Tokyo University of Agriculture
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ISHIDA Nobushige
Laboratory of Racing Chemistry
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YAMANOUCHI Keitaro
Laboratory of Applied Genetics, Graduate School of Agricultural and Life Sciences, University of Tok
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ISHII Naokata
Department of Life Sciences, Graduate School of Arts and Sciences, the University of Tokyo
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細山 徹
千葉大学理学部・生物学科・分子細胞生物学研究室
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鴛海 良輔
麻布大学獣医学部・動物応用科学科動物工学研究室
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Ishii Naokata
Department Of Life Science (sports Sciences) The University Of Tokyo
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Tachi Chikashi
Laboratory of Applied Genetics, Department of Animal Resource Science, School of Agriculture and Lif
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細山 徹
Department of Biology, Faculty of Science, Graduate School of Science and Technology, Chiba Universi
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川田 茂雄
Department of Life Sciences, Graduate School of Arts and Sciences, The University of Tokyo
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鴛海 良輔
Laboratory of Developmental and Reproductive Biotechnology, Department of Animal Resource Sciences,
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YONEDA Sachie
Laboratory of Developmental and Reproductive Biotechnology, Department of Animal Resource Sciences,
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SOETA Chie
)Center for Experimental Medicine, Institute of Medical Science, The University of Tokyo
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HASEGAWA Telhisa
Laboratory of Molecular and Cellular Biology, Equine Research Institute, Japan Racing Horse Associat
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HOSOYAMA Tohru
Department of Veterinary Physiology, Graduate School of Agricultural and Life Sciences, The Universi
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Ishida Nobushige
Laboratory Of Molecular And Cellular Biology Equine Research Institute
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Hasegawa Telhisa
Laboratory Of Molecular And Cellular Biology Equine Research Institute Japan Racing Association
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Mukoyama Harutaka
Laboratory Of Animal Physiology Tokyo University Of Agriculture
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KAWADA Shigeo
Department of Human and Engineered Environmental Studies, Graduate School of Frontier Sciences, The
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Kawada Shigeo
Department Of Human And Engineered Environmental Studies Graduate School Of Frontier Sciences The Un
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Hosoyama Tohru
Department Of Veterinary Physiology Graduate School Of Agricultural And Life Sciences The University
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Yamanouchi Keitaro
Laboratory Of Applied Genetics Graduate School Of Agricultural And Life Sciences University Of Tokyo
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OSHIUMI Ryosuke
Laboratory of Developmental and Reproductive Biotechnology, Department of Animal Resource Sciences,
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YAMANOUCHI Keitaro
Laboratory of Veterinay Physiology, Department of Veterinary Medicine, Graduate School of Agriculture and Life Sciences, The University of Tokyo
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TACHI Chikashi
Laboratory of Developmental and Reproductive Biotechnology, Department of Animal Resource Sciences, School of Veterinary Medicine and Life Sciences, Azabu University
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ISHIDA Nobushige
Laboratory of Molecular and Cellular Biology, Equine Research Institute, Japan Racing Horse Association
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Kawada Shigeo
Department of Life Sciences, Graduate School of Arts and Sciences, The University of Tokyo
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MUKOYAMA Harutaka
Laboratory of Molecular and Cellular Biology, Equine Research Institute, Japan Racing Horse Association
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YONEDA Sachie
Laboratory of Developmental and Reproductive Biotechnology, Department of Animal Resource Sciences, School of Veterinary Medicine and Life Sciences, Azabu University
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HASEGAWA Telhisa
Laboratory of Molecular and Cellular Biology, Equine Research Institute, Japan Racing Horse Association
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OSHIUMI Ryosuke
Laboratory of Developmental and Reproductive Biotechnology, Department of Animal Resource Sciences, School of Veterinary Medicine and Life Sciences, Azabu University
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