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TGF-β coordinates alanine synthesis and import for myofibroblast differentiation in pulmonary fibrosis
Fei Li, Niv Vigder, David R. Ziehr, Mari Kamiya, Hung N. Nguyen, Diana E. Ferreyra Faustino, Aseel H. Khalil, Hilaire C. Lam, Matthew L. Steinhauser, Edy Y. Kim, William M. Oldham
Fei Li, Niv Vigder, David R. Ziehr, Mari Kamiya, Hung N. Nguyen, Diana E. Ferreyra Faustino, Aseel H. Khalil, Hilaire C. Lam, Matthew L. Steinhauser, Edy Y. Kim, William M. Oldham
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Research Article Cell biology Metabolism Pulmonology

TGF-β coordinates alanine synthesis and import for myofibroblast differentiation in pulmonary fibrosis

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Abstract

Idiopathic pulmonary fibrosis (IPF) is a progressive interstitial lung disease driven by aberrant fibroblast-to-myofibroblast differentiation, which requires metabolic reprogramming. Here, we identify alanine as an essential metabolite for myofibroblast differentiation. TGF-β increases intracellular alanine levels through enhanced synthesis and import in both normal and IPF lung fibroblasts. Alanine synthesis is primarily mediated by glutamate-pyruvate transaminase 2 (GPT2), whose expression is regulated by the glutamine/glutamate/α-ketoglutarate axis. Inhibition of GPT2 depletes alanine and suppresses TGF-β–induced α-SMA and COL1A1 expression, which are rescued by exogenous alanine. We also identify solute carrier family 38 member 2 (SLC38A2) as a transporter for both alanine and glutamine, upregulated by TGF-β or alanine deprivation. SLC38A2 and GPT2 form a coordinated regulatory axis sustaining intracellular alanine levels to support myofibroblast differentiation. Mechanistically, alanine deficiency impairs glycolytic flux and depletes tricarboxylic acid cycle intermediates, while alanine supplementation provides carbon and nitrogen for intracellular glutamate and proline biosynthesis, particularly under glutamine deprivation. Combined inhibition of alanine synthesis and uptake suppresses fibrogenic responses in fibroblasts and human precision-cut lung slices, highlighting dual metabolic targeting as a potential therapeutic strategy for fibrotic lung disease.

Authors

Fei Li, Niv Vigder, David R. Ziehr, Mari Kamiya, Hung N. Nguyen, Diana E. Ferreyra Faustino, Aseel H. Khalil, Hilaire C. Lam, Matthew L. Steinhauser, Edy Y. Kim, William M. Oldham

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Figure 8

Dual inhibition of alanine uptake and synthesis alleviates pulmonary fibrosis.

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Dual inhibition of alanine uptake and synthesis alleviates pulmonary fib...
(A) Schematic overview of experiments using commercially available precision-cut lung slices (PCLS) derived from healthy donors to investigate the role of GPT inhibition and SLC38A2 knockdown in pulmonary fibrosis. In all cases, control PCLS were transfected with nontargeting (control) siRNA. (B) Supernatants collected from day 6 to day 8 were subjected to LDH assay. Each color represents an independent biological replicate. (C–E) Western blot analysis (C) and quantification of SLC38A2 (D) and α-SMA (E) expression in PCLS after TGF-β stimulation with or without SLC38A2 knockdown and BCA (250 μM) treatment. (F–H) Western blot analysis (F) and quantification of COL1A1 (G) and fibronectin (FN) (H) expression in PCLS after combined SLC38A2 knockdown and BCA (250 μM) treatment. For Western blot analysis, individual data points represent biological replicates. For D, E, G, and H, 1-way ANOVA versus TGF-β. Data are presented as mean ± SEM. ns, P > 0.05; *P < 0.05; **P < 0.01; ***P < 0.001.

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