Fueling fibrosis: BCAT1 links branched-chain amino acid metabolism to collagen production

Fibrosis remains a major driver of organ dysfunction, yet the metabolic programs that sustain extracellular matrix production are incompletely understood. In this issue of the JCI, Takizawa and colleagues identified branched-chain amino acid transaminase 1 (BCAT1) as a crucial metabolic regulator of fibroblast activation and fibrosis in a model of cardiac fibrosis. Their observations were corroborated by analyses of datasets from patients with heart failure with preserved ejection fraction and metabolic dysfunction-associated steatohepatitis. They report that by coupling mechanical and TGF-β signaling to a proline biosynthesis and utilization program, BCAT1 enhanced collagen production in activated cardiac fibroblasts. These findings place branched-chain amino acid metabolism as a pivotal contributor to fibroblast activation and highlight BCAT1 as a promising therapeutic target for fibrotic disease.

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Publication Details

Journal
Journal of Clinical Investigation
Published
2026-08-31
DOI
https://doi.org/10.1172/jci209543
Primary Topic
Cardiac Fibrosis and Remodeling
Type
article
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article

Fueling fibrosis: BCAT1 links branched-chain amino acid metabolism to collagen production

John W. Elrod, Marco Ronfini
Journal of Clinical Investigation
Cardiac Fibrosis and Remodeling
article

Fueling fibrosis: BCAT1 links branched-chain amino acid metabolism to collagen production

John W. Elrod, Marco Ronfini
article en

Abstract

Fibrosis remains a major driver of organ dysfunction, yet the metabolic programs that sustain extracellular matrix production are incompletely understood. In this issue of the JCI, Takizawa and colleagues identified branched-chain amino acid transaminase 1 (BCAT1) as a crucial metabolic regulator of fibroblast activation and fibrosis in a model of cardiac fibrosis. Their observations were corroborated by analyses of datasets from patients with heart failure with preserved ejection fraction and metabolic dysfunction-associated steatohepatitis. They report that by coupling mechanical and TGF-β signaling to a proline biosynthesis and utilization program, BCAT1 enhanced collagen production in activated cardiac fibroblasts. These findings place branched-chain amino acid metabolism as a pivotal contributor to fibroblast activation and highlight BCAT1 as a promising therapeutic target for fibrotic disease.

Journal of Clinical InvestigationVol. 136(17)
Openalex Percentile: Top 11%
Cardiac Fibrosis and Remodeling
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