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    Mstn myostatin [ Mus musculus (house mouse) ]

    Gene ID: 17700, updated on 27-Nov-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    Myostatin gene invalidation does not prevent skeletal muscle mass loss during experimental sepsis in mice.

    Myostatin gene invalidation does not prevent skeletal muscle mass loss during experimental sepsis in mice.
    Morel J, Pignard AS, Castells J, Allibert V, Hatimi L, Buhot B, Velarde M, Durieux AC, Freyssenet D.

    09/23/2024
    Myostatin regulates energy homeostasis through autocrine- and paracrine-mediated microenvironment communication.

    Myostatin regulates energy homeostasis through autocrine- and paracrine-mediated microenvironment communication.
    Wang H, Guo S, Gao H, Ding J, Li H, Kong X, Zhang S, He M, Feng Y, Wu W, Xu K, Chen Y, Zhang H, Liu T, Kong X., Free PMC Article

    08/21/2024
    Effects of myostatin gene knockout on white fat browning and related gene expression in type 2 diabetic mice.

    Effects of myostatin gene knockout on white fat browning and related gene expression in type 2 diabetic mice.
    Cheng J, Lee J, Liu Y, Wang Y, Duan M, Zeng Z.

    07/4/2024
    Synergistically Acting on Myostatin and Agrin Pathways Increases Neuromuscular Junction Stability and Endurance in Old Mice.

    Synergistically Acting on Myostatin and Agrin Pathways Increases Neuromuscular Junction Stability and Endurance in Old Mice.
    Schellino R, Boido M, Vrijbloed JW, Fariello RG, Vercelli A., Free PMC Article

    03/8/2024
    Myostatin and CXCL11 promote nervous tissue macrophages to maintain osteoarthritis pain.

    Myostatin and CXCL11 promote nervous tissue macrophages to maintain osteoarthritis pain.
    Martin Gil C, Raoof R, Versteeg S, Willemen HLDM, Lafeber FPJG, Mastbergen SC, Eijkelkamp N.

    01/26/2024
    The effect of modification of DNA interference on myostatin gene expression in mice.

    The effect of modification of DNA interference on myostatin gene expression in mice.
    Riasi M, Mozaffari-Jovin S, Javadmanesh A.

    01/12/2024
    Myostatin and the Heart.

    Myostatin and the Heart.
    Knapp M, Supruniuk E, Górski J., Free PMC Article

    01/3/2024
    GDF8 inhibition enhances musculoskeletal recovery and mitigates posttraumatic osteoarthritis following joint injury.

    GDF8 inhibition enhances musculoskeletal recovery and mitigates posttraumatic osteoarthritis following joint injury.
    Brightwell CR, Latham CM, Keeble AR, Thomas NT, Owen AM, Reeves KA, Long DE, Patrick M, Gonzalez-Velez S, Abed V, Annamalai RT, Jacobs C, Conley CE, Hawk GS, Stone AV, Fry JL, Thompson KL, Johnson DL, Noehren B, Fry CS., Free PMC Article

    12/4/2023
    Resistance exercise alleviates dexamethasone-induced muscle atrophy via Sestrin2/MSTN pathway in C57BL/6J mice.

    Resistance exercise alleviates dexamethasone-induced muscle atrophy via Sestrin2/MSTN pathway in C57BL/6J mice.
    Yang Y, Yang X, Huang Y, Liu S, Niu Y, Fu L.

    10/10/2023
    Divergent effects of myostatin inhibition on cardiac and skeletal muscles in a mouse model of pressure overload.

    Divergent effects of myostatin inhibition on cardiac and skeletal muscles in a mouse model of pressure overload.
    Shi C, Zijlstra SN, de Wit S, Meijers WC, Aboumsallem JP, Silljé HHW, de Boer RA.

    06/29/2023
    Effects of Myostatin on Nuclear Morphology at the Myotendinous Junction.

    Effects of Myostatin on Nuclear Morphology at the Myotendinous Junction.
    Amemiya H, Yamamoto M, Higa K, Watanabe G, Taniguchi S, Kitamura K, Jeong J, Yanagisawa N, Fukuda KI, Abe S., Free PMC Article

    04/17/2023
    Functional substitutions of amino acids that differ between GDF11 and GDF8 impact skeletal development and skeletal muscle.

    Functional substitutions of amino acids that differ between GDF11 and GDF8 impact skeletal development and skeletal muscle.
    Lian J, Walker RG, D'Amico A, Vujic A, Mills MJ, Messemer KA, Mendello KR, Goldstein JM, Leacock KA, Epp S, Stimpfl EV, Thompson TB, Wagers AJ, Lee RT., Free PMC Article

    02/10/2023
    Loss of Myostatin Alters Mitochondrial Oxidative Phosphorylation, TCA Cycle Activity, and ATP Production in Skeletal Muscle.

    Loss of Myostatin Alters Mitochondrial Oxidative Phosphorylation, TCA Cycle Activity, and ATP Production in Skeletal Muscle.
    Wang X, Wei Z, Gu M, Zhu L, Hai C, Di A, Wu D, Bai C, Su G, Liu X, Yang L, Li G., Free PMC Article

    01/11/2023
    Myostatin Knockout Affects Mitochondrial Function by Inhibiting the AMPK/SIRT1/PGC1alpha Pathway in Skeletal Muscle.

    Myostatin Knockout Affects Mitochondrial Function by Inhibiting the AMPK/SIRT1/PGC1α Pathway in Skeletal Muscle.
    Gu M, Wei Z, Wang X, Gao Y, Wang D, Liu X, Bai C, Su G, Yang L, Li G., Free PMC Article

    01/7/2023
    Myostatin inhibits insulin-like growth factor 1-dependent citrate secretion and osteogenesis via nicotinamide adenine dinucleotide phosphate oxidase-4 in a mouse mesenchymal stem cell line.

    Myostatin inhibits insulin-like growth factor 1-dependent citrate secretion and osteogenesis via nicotinamide adenine dinucleotide phosphate oxidase-4 in a mouse mesenchymal stem cell line.
    Liu XH, Pan JP, Bauman WA, Cardozo C.

    11/26/2022
    Myostatin/HIF2alpha-Mediated Ferroptosis is Involved in Skeletal Muscle Dysfunction in Chronic Obstructive Pulmonary Disease.

    Myostatin/HIF2α-Mediated Ferroptosis is Involved in Skeletal Muscle Dysfunction in Chronic Obstructive Pulmonary Disease.
    Zhang L, Li D, Chang C, Sun Y., Free PMC Article

    10/8/2022
    [Mstn knockdown promotes intramuscular fatty acid metabolism by beta oxidation via the up-regulation of Cpt1b].

    [Mstn knockdown promotes intramuscular fatty acid metabolism by β oxidation via the up-regulation of Cpt1b].
    Guo Y, Yang R, Zhang Z, Bao D, Sun Y, Yang L, Li G, Gao L.

    09/3/2022
    Myostain is involved in ginsenoside Rb1-mediated anti-obesity.

    Myostain is involved in ginsenoside Rb1-mediated anti-obesity.
    Li HS, Kuang JY, Liu GJ, Wu WJ, Yin XL, Li HD, Wang L, Qin T, Zhang WC, Sun YY., Free PMC Article

    06/11/2022
    Myostatin gene inactivation increases post-mortem calpain-dependent muscle proteolysis in mice.

    Myostatin gene inactivation increases post-mortem calpain-dependent muscle proteolysis in mice.
    Nassar R, Vernus B, Carnac G, Fouret G, Goustard B, Casas F, Tintignac L, Cassar-Malek I, Picard B, Seiliez I, Brioche T, Koechlin-Ramonatxo C, Bertrand-Gaday C, Hamade A, Najjar F, Chabi B, Bonnieu A.

    01/29/2022
    Statins induce skeletal muscle atrophy via GGPP depletion-dependent myostatin overexpression in skeletal muscle and brown adipose tissue.

    Statins induce skeletal muscle atrophy via GGPP depletion-dependent myostatin overexpression in skeletal muscle and brown adipose tissue.
    Wang L, Zheng ZG, Meng L, Zhu L, Li P, Chen J, Yang H.

    12/25/2021
    Interaction of Fibromodulin and Myostatin to Regulate Skeletal Muscle Aging: An Opposite Regulation in Muscle Aging, Diabetes, and Intracellular Lipid Accumulation.

    Interaction of Fibromodulin and Myostatin to Regulate Skeletal Muscle Aging: An Opposite Regulation in Muscle Aging, Diabetes, and Intracellular Lipid Accumulation.
    Lee EJ, Ahmad SS, Lim JH, Ahmad K, Shaikh S, Lee YS, Park SJ, Jin JO, Lee YH, Choi I., Free PMC Article

    11/22/2021
    Docosanoic acid conjugation to siRNA enables functional and safe delivery to skeletal and cardiac muscles.

    Docosanoic acid conjugation to siRNA enables functional and safe delivery to skeletal and cardiac muscles.
    Biscans A, Caiazzi J, McHugh N, Hariharan V, Muhuri M, Khvorova A., Free PMC Article

    11/22/2021
    Lowcalorie sweetener Dpsicose promotes hydrogen peroxidemediated apoptosis in C2C12 myogenic cells favoring skeletal muscle cell injury.

    Low‑calorie sweetener D‑psicose promotes hydrogen peroxide‑mediated apoptosis in C2C12 myogenic cells favoring skeletal muscle cell injury.
    Wei ZJ, Sun L, Li YL, Muhammad JS, Wang Y, Feng QW, Zhang YZ, Inadera H, Cui ZG, Wu CA., Free PMC Article

    11/13/2021
    A myostatin-CCL20-CCR6 axis regulates Th17 cell recruitment to inflamed joints in experimental arthritis.

    A myostatin-CCL20-CCR6 axis regulates Th17 cell recruitment to inflamed joints in experimental arthritis.
    Fennen M, Weinhage T, Kracke V, Intemann J, Varga G, Wehmeyer C, Foell D, Korb-Pap A, Pap T, Dankbar B., Free PMC Article

    11/13/2021
    Deficiency of myostatin protects skeletal muscle cells from ischemia reperfusion injury.

    Deficiency of myostatin protects skeletal muscle cells from ischemia reperfusion injury.
    Wallner C, Drysch M, Becerikli M, Schmidt SV, Hahn S, Wagner JM, Reinkemeier F, Dadras M, Sogorski A, von Glinski M, Lehnhardt M, Behr B., Free PMC Article

    10/30/2021
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