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Pathogenic transcriptional reprogramming of fibro-adipogenic progenitors in mice with FOP and its mitigation by inhibition of ACVR1 and activin A

Created on 02 Oct 2026

Authors

Stoessel, S. J., Burdick, L. N., Davis, A. J., Goldhamer, D. J.

Abstract

Individuals with fibrodysplasia ossificans progressiva (FOP), a rare genetic disorder caused by mutations in the bone morphogenetic protein receptor ACVR1 (also known as ALK2), experience progressive and severely debilitating endochondral heterotopic ossification (HO). Previous studies have identified fibro-adipogenic progenitors (FAPs) as a major cellular source of HO in FOP mouse models. Here, we used mRNA sequencing of FAPs isolated from injured muscle of FOP mice to capture the earliest gene expression changes associated with the transformation of muscle tissues into bone. Whereas the transcriptomes of mutant and wild-type FAPs were indistinguishable prior to injury and at 1 day post injury, dramatic dysregulation of gene expression was observed at 3 and 5 days after injury. Surprisingly, gene expression changes suggested early specification of osteochondral lineages by 3 days post injury, approximately 3 to 4 days before the appearance of histologically identifiable cartilage. We identified dysregulation of genes encoding components of major signaling pathways, cell cycle regulators, extracellular matrix components, and hypoxia response mediators, and showed that these gene expression changes are temporally associated with abnormal population growth of mutant FAPs. We further demonstrated that treatment of FOP mice with either an anti-activin A monoclonal antibody or the ACVR1 kinase inhibitor BLU-782 (IPN60130; fidrisertib) normalized the expression of the majority of dysregulated FAP genes. However, the relative efficacy of the drugs differed, and distinct sets of overlapping genes were normalized by the treatments. The substantial transcriptional changes caused by these drugs in FAPs from normally regenerating muscle were also enumerated and described. These findings define early transcriptional events associated with pathogenic FAP reprogramming and provide a molecular framework for understanding the shared and distinct effects of activin A and ACVR1 inhibition.

Preprint server: bioRxiv
The authors list and abstract were imported from bioRxiv on 02 Oct 2026.

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