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PMID: 33078583 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Cell autonomous requirement of neurofibromin (Nf1) for postnatal muscle hypertrophic growth and metabolic homeostasis.

Journal of cachexia, sarcopenia and muscle ·Vol. 11 ·No. 6 ·2020-00-00 ·页码 1758-1778

Wei X, Franke J, Ost M, Wardelmann K, Börno S, Timmermann B, Meierhofer D, Kleinridders A, Klaus S, Stricker S

Abstract

Neurofibromatosis type 1 (NF1) is a multi-organ disease caused by mutations in neurofibromin 1 (NF1). Amongst other features, NF1 patients frequently show reduced muscle mass and strength, impairing patients' mobility and increasing the risk of fall. The role of Nf1 in muscle and the cause for the NF1-associated myopathy are mostly unknown. To dissect the function of Nf1 in muscle, we created muscle-specific knockout mouse models for NF1, inactivating Nf1 in the prenatal myogenic lineage either under the Lbx1 promoter or under the Myf5 promoter. Mice were analysed during prenatal and postnatal myogenesis and muscle growth. Nf1Lbx1 and Nf1Myf5 animals showed only mild defects in prenatal myogenesis. Nf1Lbx1 animals were perinatally lethal, while Nf1Myf5 animals survived only up to approximately 25 weeks. A comprehensive phenotypic characterization of Nf1Myf5 animals showed decreased postnatal growth, reduced muscle size, and fast fibre atrophy. Proteome and transcriptome analyses of muscle tissue indicated decreased protein synthesis and increased proteasomal degradation, and decreased glycolytic and increased oxidative activity in muscle tissue. High-resolution respirometry confirmed enhanced oxidative metabolism in Nf1Myf5 muscles, which was concomitant to a fibre type shift from type 2B to type 2A and type 1. Moreover, Nf1Myf5 muscles showed hallmarks of decreased activation of mTORC1 and increased expression of atrogenes. Remarkably, loss of Nf1 promoted a robust activation of AMPK with a gene expression profile indicative of increased fatty acid catabolism. Additionally, we observed a strong induction of genes encoding catabolic cytokines in muscle Nf1Myf5 animals, in line with a drastic reduction of white, but not brown adipose tissue. Our results demonstrate a cell autonomous role for Nf1 in myogenic cells during postnatal muscle growth required for metabolic and proteostatic homeostasis. Furthermore, Nf1 deficiency in muscle drives cross-tissue communication and mobilization of lipid reserves.

Keywords
AMPK Muscle atrophy Muscle fibre type Muscle metabolism Myopathy Neurofibromatosis / NF1
MeSH 主题词
Animals Homeostasis Humans Mice Muscle Development Muscles Neurofibromatosis 1/genetics Neurofibromin 1/genetics,metabolism
化学物质
Neurofibromin 1
作者与单位
共 10 位作者,点击展开单位 / ORCID
Wei Xiaoyan
Musculoskeletal Development and Regeneration Group, Institute of Chemistry and Biochemistry, Freie Universität Berlin, Berlin, Germany. | Development and Disease Group, Max Planck Institute for Molecular Genetics, Berlin, Germany.
Franke Julia
Musculoskeletal Development and Regeneration Group, Institute of Chemistry and Biochemistry, Freie Universität Berlin, Berlin, Germany. | Development and Disease Group, Max Planck Institute for Molecular Genetics, Berlin, Germany.
Ost Mario ORCID
Department of Physiology of Energy Metabolism, German Institute for Human Nutrition, Nuthetal, Germany. | Department of Neuropathology, University Hospital Leipzig, Leipzig, Germany.
Wardelmann Kristina
Junior Research Group Central Regulation of Metabolism, German Institute for Human Nutrition, Nuthetal, Germany. | Institute of Nutritional Science, Department of Molecular and Experimental Nutritional Medicine, University of Potsdam, Potsdam, Germany.
Börno Stefan
Sequencing Core Unit, Max Planck Institute for Molecular Genetics, Berlin, Germany.
Timmermann Bernd
Sequencing Core Unit, Max Planck Institute for Molecular Genetics, Berlin, Germany.
Meierhofer David ORCID
Mass Spectrometry Core Unit, Max Planck Institute for Molecular Genetics, Berlin, Germany.
Kleinridders Andre ORCID
Junior Research Group Central Regulation of Metabolism, German Institute for Human Nutrition, Nuthetal, Germany. | Institute of Nutritional Science, Department of Molecular and Experimental Nutritional Medicine, University of Potsdam, Potsdam, Germany. | German Center for Diabetes Research (DZD), München-Neuherberg, Germany.
Klaus Susanne ORCID
Department of Physiology of Energy Metabolism, German Institute for Human Nutrition, Nuthetal, Germany. | Institute of Nutritional Science, University of Potsdam, Potsdam, Germany.
Stricker Sigmar ORCID
Musculoskeletal Development and Regeneration Group, Institute of Chemistry and Biochemistry, Freie Universität Berlin, Berlin, Germany. | Development and Disease Group, Max Planck Institute for Molecular Genetics, Berlin, Germany.
Article Info
Journal
Journal of cachexia, sarcopenia and muscle
Abbr.
J Cachexia Sarcopenia Muscle
ISSN
2190-6009
Published
2020-00-00
电子出版
2020-00-19
页码
1758-1778
Language
English
Country/Region
Germany
NLM ID
101552883
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