NEB mutations disrupt the super-relaxed state of myosin and remodel the muscle metabolic proteome in nemaline myopathy
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Author
Ranu, N.Laitila, J.
Dugdale, H.F.
Mariano, J.
Kolb, J.S.
Wallgren-Pettersson, C.
Witting, N.
Vissing, J.
Vilchez, J.J.
Fiorillo, C.
Zanoteli, E.
Auranen, M.
Jokela, M.
Tasca, G.
Claeys, K.G.
Voermans, N.C.
Palmio, J.
Huovinen, S.
Moggio, M.
Beck, T.N.
Kontrogianni-Konstantopoulos, A.
Granzier, H.
Ochala, J.
Affiliation
Department of Cellular and Molecular Medicine, University of ArizonaIssue Date
2022-12-17
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BioMed Central LtdCitation
Ranu, N., Laitila, J., Dugdale, H. F., Mariano, J., Kolb, J. S., Wallgren-Pettersson, C., Witting, N., Vissing, J., Vilchez, J. J., Fiorillo, C., Zanoteli, E., Auranen, M., Jokela, M., Tasca, G., Claeys, K. G., Voermans, N. C., Palmio, J., Huovinen, S., Moggio, M., … Ochala, J. (2022). NEB mutations disrupt the super-relaxed state of myosin and remodel the muscle metabolic proteome in nemaline myopathy. Acta Neuropathologica Communications, 10(1).Rights
© The Author(s) 2022. Open Access This article is licensed under a Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/).Collection Information
This item from the UA Faculty Publications collection is made available by the University of Arizona with support from the University of Arizona Libraries. If you have questions, please contact us at repository@u.library.arizona.edu.Abstract
Nemaline myopathy (NM) is one of the most common non-dystrophic genetic muscle disorders. NM is often associated with mutations in the NEB gene. Even though the exact NEB-NM pathophysiological mechanisms remain unclear, histological analyses of patients’ muscle biopsies often reveal unexplained accumulation of glycogen and abnormally shaped mitochondria. Hence, the aim of the present study was to define the exact molecular and cellular cascade of events that would lead to potential changes in muscle energetics in NEB-NM. For that, we applied a wide range of biophysical and cell biology assays on skeletal muscle fibres from NM patients as well as untargeted proteomics analyses on isolated myofibres from a muscle-specific nebulin‐deficient mouse model. Unexpectedly, we found that the myosin stabilizing conformational state, known as super-relaxed state, was significantly impaired, inducing an increase in the energy (ATP) consumption of resting muscle fibres from NEB-NM patients when compared with controls or with other forms of genetic/rare, acquired NM. This destabilization of the myosin super-relaxed state had dynamic consequences as we observed a remodeling of the metabolic proteome in muscle fibres from nebulin‐deficient mice. Altogether, our findings explain some of the hitherto obscure hallmarks of NM, including the appearance of abnormal energy proteins and suggest potential beneficial effects of drugs targeting myosin activity/conformations for NEB-NM. © 2022, The Author(s).Note
Open access journalISSN
2051-5960PubMed ID
36528760Version
Final published versionae974a485f413a2113503eed53cd6c53
10.1186/s40478-022-01491-9
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Except where otherwise noted, this item's license is described as © The Author(s) 2022. Open Access This article is licensed under a Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/).
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