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Toward countering muscle and bone loss with spaceflight: GSK3 as a potential target

We examined the effects of ∼30 days of spaceflight on glycogen synthase kinase 3 (GSK3) content and inhibitory serine phosphorylation in murine muscle and bone samples from four separate missions (BION-M1, rodent research [RR]1, RR9, and RR18). Spaceflight reduced GSK3β content across all missions,...

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Autores principales: Baranowski, Ryan W., Braun, Jessica L., Hockey, Briana L., Yumol, Jenalyn L., Geromella, Mia S., Watson, Colton J.F., Kurgan, Nigel, Messner, Holt N., Whitley, Kennedy C., MacNeil, Adam J., Gauquelin-Koch, Guillemette, Bertile, Fabrice, Gittings, William, Vandenboom, Rene, Ward, Wendy E., Fajardo, Val A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10285634/
https://www.ncbi.nlm.nih.gov/pubmed/37360691
http://dx.doi.org/10.1016/j.isci.2023.107047
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author Baranowski, Ryan W.
Braun, Jessica L.
Hockey, Briana L.
Yumol, Jenalyn L.
Geromella, Mia S.
Watson, Colton J.F.
Kurgan, Nigel
Messner, Holt N.
Whitley, Kennedy C.
MacNeil, Adam J.
Gauquelin-Koch, Guillemette
Bertile, Fabrice
Gittings, William
Vandenboom, Rene
Ward, Wendy E.
Fajardo, Val A.
author_facet Baranowski, Ryan W.
Braun, Jessica L.
Hockey, Briana L.
Yumol, Jenalyn L.
Geromella, Mia S.
Watson, Colton J.F.
Kurgan, Nigel
Messner, Holt N.
Whitley, Kennedy C.
MacNeil, Adam J.
Gauquelin-Koch, Guillemette
Bertile, Fabrice
Gittings, William
Vandenboom, Rene
Ward, Wendy E.
Fajardo, Val A.
author_sort Baranowski, Ryan W.
collection PubMed
description We examined the effects of ∼30 days of spaceflight on glycogen synthase kinase 3 (GSK3) content and inhibitory serine phosphorylation in murine muscle and bone samples from four separate missions (BION-M1, rodent research [RR]1, RR9, and RR18). Spaceflight reduced GSK3β content across all missions, whereas its serine phosphorylation was elevated with RR18 and BION-M1. The reduction in GSK3β was linked to the reduction in type IIA fibers commonly observed with spaceflight as these fibers are particularly enriched with GSK3. We then tested the effects of inhibiting GSK3 before this fiber type shift, and we demonstrate that muscle-specific Gsk3 knockdown increased muscle mass, preserved muscle strength, and promoted the oxidative fiber type with Earth-based hindlimb unloading. In bone, GSK3 activation was enhanced after spaceflight; and strikingly, muscle-specific Gsk3 deletion increased bone mineral density in response to hindlimb unloading. Thus, future studies should test the effects of GSK3 inhibition during spaceflight.
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spelling pubmed-102856342023-06-23 Toward countering muscle and bone loss with spaceflight: GSK3 as a potential target Baranowski, Ryan W. Braun, Jessica L. Hockey, Briana L. Yumol, Jenalyn L. Geromella, Mia S. Watson, Colton J.F. Kurgan, Nigel Messner, Holt N. Whitley, Kennedy C. MacNeil, Adam J. Gauquelin-Koch, Guillemette Bertile, Fabrice Gittings, William Vandenboom, Rene Ward, Wendy E. Fajardo, Val A. iScience Article We examined the effects of ∼30 days of spaceflight on glycogen synthase kinase 3 (GSK3) content and inhibitory serine phosphorylation in murine muscle and bone samples from four separate missions (BION-M1, rodent research [RR]1, RR9, and RR18). Spaceflight reduced GSK3β content across all missions, whereas its serine phosphorylation was elevated with RR18 and BION-M1. The reduction in GSK3β was linked to the reduction in type IIA fibers commonly observed with spaceflight as these fibers are particularly enriched with GSK3. We then tested the effects of inhibiting GSK3 before this fiber type shift, and we demonstrate that muscle-specific Gsk3 knockdown increased muscle mass, preserved muscle strength, and promoted the oxidative fiber type with Earth-based hindlimb unloading. In bone, GSK3 activation was enhanced after spaceflight; and strikingly, muscle-specific Gsk3 deletion increased bone mineral density in response to hindlimb unloading. Thus, future studies should test the effects of GSK3 inhibition during spaceflight. Elsevier 2023-06-08 /pmc/articles/PMC10285634/ /pubmed/37360691 http://dx.doi.org/10.1016/j.isci.2023.107047 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Baranowski, Ryan W.
Braun, Jessica L.
Hockey, Briana L.
Yumol, Jenalyn L.
Geromella, Mia S.
Watson, Colton J.F.
Kurgan, Nigel
Messner, Holt N.
Whitley, Kennedy C.
MacNeil, Adam J.
Gauquelin-Koch, Guillemette
Bertile, Fabrice
Gittings, William
Vandenboom, Rene
Ward, Wendy E.
Fajardo, Val A.
Toward countering muscle and bone loss with spaceflight: GSK3 as a potential target
title Toward countering muscle and bone loss with spaceflight: GSK3 as a potential target
title_full Toward countering muscle and bone loss with spaceflight: GSK3 as a potential target
title_fullStr Toward countering muscle and bone loss with spaceflight: GSK3 as a potential target
title_full_unstemmed Toward countering muscle and bone loss with spaceflight: GSK3 as a potential target
title_short Toward countering muscle and bone loss with spaceflight: GSK3 as a potential target
title_sort toward countering muscle and bone loss with spaceflight: gsk3 as a potential target
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10285634/
https://www.ncbi.nlm.nih.gov/pubmed/37360691
http://dx.doi.org/10.1016/j.isci.2023.107047
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