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Zfp697 is an RNA-binding protein that regulates skeletal muscle inflammation and regeneration

Authors :
Correia, Jorge C.
Jannig, Paulo R.
Gosztyla, Maya L.
Cervenka, Igor
Ducommun, Serge
Præstholm, Stine M.
Dumont, Kyle
Liu, Zhengye
Liang, Qishan
Edsgärd, Daniel
Emanuelsson, Olof
Gregorevic, Paul
Westerblad, Håkan
Venckunas, Tomas
Brazaitis, Marius
Kamandulis, Sigitas
Lanner, Johanna T.
Yeo, Gene W.
Ruas, Jorge L.
Source :
bioRxiv
Publication Year :
2023
Publisher :
Cold Spring Harbor Laboratory, 2023.

Abstract

Muscular atrophy is a mortality risk factor that happens with disuse, chronic disease, and aging. Recovery from atrophy requires changes in several cell types including muscle fibers, and satellite and immune cells. Here we show that Zfp697/ZNF697 is a damage-induced regulator of muscle regeneration, during which its expression is transiently elevated. Conversely, sustained Zfp697 expression in mouse muscle leads to a gene expression signature of chemokine secretion, immune cell recruitment, and extracellular matrix remodeling. Myofiber-specific Zfp697 ablation hinders the inflammatory and regenerative response to muscle injury, compromising functional recovery. We uncover Zfp697 as an essential interferon gamma mediator in muscle cells, interacting primarily with ncRNAs such as the pro-regenerative miR-206. In sum, we identify Zfp697 as an integrator of cell-cell communication necessary for tissue regeneration. ONE SENTENCE SUMMARY: Zfp697 is necessary for interferon gamma signaling and muscle regeneration.

Subjects

Subjects :
Article

Details

Language :
English
Database :
OpenAIRE
Journal :
bioRxiv
Accession number :
edsair.pmid..........502fd432c1b31cbe1dcd1f6862a6dc46