Secreted folate receptor γ drives fibrogenesis in metabolic dysfunction–associated steatohepatitis by amplifying TGFβ signaling in hepatic stellate cells

Author:

Quinn Connor1ORCID,Rico Mario C.1ORCID,Merali Carmen1ORCID,Barrero Carlos A.1ORCID,Perez-Leal Oscar1ORCID,Mischley Victoria23ORCID,Karanicolas John12ORCID,Friedman Scott L.4ORCID,Merali Salim1ORCID

Affiliation:

1. Temple University School of Pharmacy, Philadelphia, PA 19140 USA.

2. Molecular Therapeutics Program, Fox Chase Cancer Center, Philadelphia, PA 19111, USA.

3. Drexel University College of Medicine, Philadelphia, PA 19102, USA.

4. Division of Liver Diseases, Icahn School of Medicine at Mount Sinai, New York, NY 10029, USA.

Abstract

Hepatic fibrosis is the primary determinant of mortality in patients with metabolic dysfunction–associated steatohepatitis (MASH). Transforming growth factor–β (TGFβ), a master profibrogenic cytokine, is a promising therapeutic target that has not yet been translated into an effective therapy in part because of liabilities associated with systemic TGFβ antagonism. We have identified that soluble folate receptor γ (FOLR3), which is expressed in humans but not in rodents, is a secreted protein that is elevated in the livers of patients with MASH but not in those with metabolic dysfunction–associated steatotic liver disease, those with type II diabetes, or healthy individuals. Global proteomics showed that FOLR3 was the most highly significant MASH-specific protein and was positively correlated with increasing fibrosis stage, consistent with stimulation of activated hepatic stellate cells (HSCs), which are the key fibrogenic cells in the liver. Exposure of HSCs to exogenous FOLR3 led to elevated extracellular matrix (ECM) protein production, an effect synergistically potentiated by TGFβ1. We found that FOLR3 interacts with the serine protease HTRA1, a known regulator of TGFBR, and activates TGFβ signaling. Administration of human FOLR3 to mice induced severe bridging fibrosis and an ECM pattern resembling human MASH. Our study thus uncovers a role of FOLR3 in enhancing fibrosis.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

General Medicine

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