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USP18 is an essential regulator of muscle cell differentiation and maturation.
Olie, Cyriel Sebastiaan; Pinto-Fernández, Adán; Damianou, Andreas; Vendrell, Iolanda; Mei, Hailiang; den Hamer, Bianca; van der Wal, Erik; de Greef, Jessica C; Raz, Vered; Kessler, Benedikt M.
Afiliação
  • Olie CS; Human Genetics department, Leiden University Medical Centre, 2333ZC, Leiden, The Netherlands.
  • Pinto-Fernández A; Chinese Academy for Medical Sciences Oxford Institute, Nuffield Department of Medicine, University of Oxford, Roosevelt Drive, Oxford, OX3 7FZ, UK.
  • Damianou A; Target Discovery Institute, Centre for Medicines Discovery, Nuffield Department of Medicine, University of Oxford, Oxford, OX3 7FZ, UK.
  • Vendrell I; Chinese Academy for Medical Sciences Oxford Institute, Nuffield Department of Medicine, University of Oxford, Roosevelt Drive, Oxford, OX3 7FZ, UK.
  • Mei H; Target Discovery Institute, Centre for Medicines Discovery, Nuffield Department of Medicine, University of Oxford, Oxford, OX3 7FZ, UK.
  • den Hamer B; Chinese Academy for Medical Sciences Oxford Institute, Nuffield Department of Medicine, University of Oxford, Roosevelt Drive, Oxford, OX3 7FZ, UK.
  • van der Wal E; Target Discovery Institute, Centre for Medicines Discovery, Nuffield Department of Medicine, University of Oxford, Oxford, OX3 7FZ, UK.
  • de Greef JC; Sequencing Analysis Support Core, Leiden University Medical Centre, 2333ZC, Leiden, The Netherlands.
  • Raz V; Human Genetics department, Leiden University Medical Centre, 2333ZC, Leiden, The Netherlands.
  • Kessler BM; Human Genetics department, Leiden University Medical Centre, 2333ZC, Leiden, The Netherlands.
Cell Death Dis ; 14(3): 231, 2023 03 31.
Article em En | MEDLINE | ID: mdl-37002195
ABSTRACT
The ubiquitin proteasomal system is a critical regulator of muscle physiology, and impaired UPS is key in many muscle pathologies. Yet, little is known about the function of deubiquitinating enzymes (DUBs) in the muscle cell context. We performed a genetic screen to identify DUBs as potential regulators of muscle cell differentiation. Surprisingly, we observed that the depletion of ubiquitin-specific protease 18 (USP18) affected the differentiation of muscle cells. USP18 depletion first stimulated differentiation initiation. Later, during differentiation, the absence of USP18 expression abrogated myotube maintenance. USP18 enzymatic function typically attenuates the immune response by removing interferon-stimulated gene 15 (ISG15) from protein substrates. However, in muscle cells, we found that USP18, predominantly nuclear, regulates differentiation independent of ISG15 and the ISG response. Exploring the pattern of RNA expression profiles and protein networks whose levels depend on USP18 expression, we found that differentiation initiation was concomitant with reduced expression of the cell-cycle gene network and altered expression of myogenic transcription (co) factors. We show that USP18 depletion altered the calcium channel gene network, resulting in reduced calcium flux in myotubes. Additionally, we show that reduced expression of sarcomeric proteins in the USP18 proteome was consistent with reduced contractile force in an engineered muscle model. Our results revealed nuclear USP18 as a critical regulator of differentiation initiation and maintenance, independent of ISG15 and its role in the ISG response.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Ubiquitinas / Citocinas Tipo de estudo: Prognostic_studies Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Ubiquitinas / Citocinas Tipo de estudo: Prognostic_studies Idioma: En Ano de publicação: 2023 Tipo de documento: Article