dc.creatorUniversidad San Sebastián
dc.creatorUniversidad San Sebastián
dc.creatorUniversidad San Sebastián
dc.creatorUniversidad San Sebastián
dc.creatorKajabadi, Nasim
dc.creatorLow, Marcela
dc.creatorJacques, Erik
dc.creatorLad, Heta
dc.creatorTung, Lin Wei
dc.creatorBabaeijandaghi, Farshad
dc.creatorGamu, Daniel
dc.creatorZelada, Diego
dc.creatorWong, Chi Kin
dc.creatorChang, Chihkai
dc.creatorYi, Lin
dc.creatorWosczyna, Michael N.
dc.creatorRando, Thomas A.
dc.creatorHenríquez, Juan Pablo
dc.creatorGibson, William T.
dc.creatorGilbert, Penney M.
dc.creatorRossi, Fabio M.V.
dc.date.accessioned2023-05-24T05:08:18Z
dc.date.available2023-05-24T05:08:18Z
dc.date.created2023-05-24T05:08:18Z
dc.date.issued2023-03-27
dc.identifier1534-5807
dc.identifierhttps://repositorio.uss.cl/handle/uss/7842
dc.identifier10.1016/j.devcel.2023.02.009
dc.description.abstractLoss of muscle mass is a common manifestation of chronic disease. We find the canonical Wnt pathway to be activated in mesenchymal progenitors (MPs) from cancer-induced cachectic mouse muscle. Next, we induce β-catenin transcriptional activity in murine MPs. As a result, we observe expansion of MPs in the absence of tissue damage, as well as rapid loss of muscle mass. Because MPs are present throughout the organism, we use spatially restricted CRE activation and show that the induction of tissue-resident MP activation is sufficient to induce muscle atrophy. We further identify increased expression of stromal NOGGIN and ACTIVIN-A as key drivers of atrophic processes in myofibers, and we verify their expression by MPs in cachectic muscle. Finally, we show that blocking ACTIVIN-A rescues the mass loss phenotype triggered by β-catenin activation in MPs, confirming its key functional role and strengthening the rationale for targeting this pathway in chronic disease.
dc.languageeng
dc.relationDevelopmental Cell
dc.titleActivation of β-catenin in mesenchymal progenitors leads to muscle mass loss
dc.typeArtículo


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