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Pyruvate metabolism dictates fibroblast sensitivity to GLS1 inhibition during fibrogenesis
Greg Contento, Jo-Anne A.M. Wilson, Brintha Selvarajah, Manuela Platé, Delphine Guillotin, Valle Morales, Marcello Trevisani, Vanessa Pitozzi, Katiuscia Bianchi, Rachel C. Chambers
Greg Contento, Jo-Anne A.M. Wilson, Brintha Selvarajah, Manuela Platé, Delphine Guillotin, Valle Morales, Marcello Trevisani, Vanessa Pitozzi, Katiuscia Bianchi, Rachel C. Chambers
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Research Article Cell biology Metabolism

Pyruvate metabolism dictates fibroblast sensitivity to GLS1 inhibition during fibrogenesis

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Abstract

Fibrosis is a chronic disease characterized by excessive extracellular matrix production, which leads to disruption of organ function. Fibroblasts are key effector cells of this process, responding chiefly to the pleiotropic cytokine transforming growth factor–β1 (TGF-β1), which promotes fibroblast to myofibroblast differentiation. We found that extracellular nutrient availability profoundly influenced the TGF-β1 transcriptome of primary human lung fibroblasts and that biosynthesis of amino acids emerged as a top enriched TGF-β1 transcriptional module. We subsequently uncovered a key role for pyruvate in influencing glutaminase (GLS1) inhibition during TGF-β1–induced fibrogenesis. In pyruvate-replete conditions, GLS1 inhibition was ineffective in blocking TGF-β1–induced fibrogenesis, as pyruvate can be used as the substrate for glutamate and alanine production via glutamate dehydrogenase (GDH) and glutamic-pyruvic transaminase 2 (GPT2), respectively. We further show that dual targeting of either GPT2 or GDH in combination with GLS1 inhibition was required to fully block TGF-β1–induced collagen synthesis. These findings embolden a therapeutic strategy aimed at additional targeting of mitochondrial pyruvate metabolism in the presence of a glutaminolysis inhibitor to interfere with the pathological deposition of collagen in the setting of pulmonary fibrosis and potentially other fibrotic conditions.

Authors

Greg Contento, Jo-Anne A.M. Wilson, Brintha Selvarajah, Manuela Platé, Delphine Guillotin, Valle Morales, Marcello Trevisani, Vanessa Pitozzi, Katiuscia Bianchi, Rachel C. Chambers

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Figure 1

The TGF-β1–induced transcriptome is sensitive to media composition.

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The TGF-β1–induced transcriptome is sensitive to media composition.
(A a...
(A and B) Volcano plots showing differentially expressed genes (DEGs) in (A) DMEMlo and (B) DMEMhi of pHLFs stimulated with TGF-β1 (1 ng/mL) for 24 hours with cutoff values q ≤ 0.05 and fold-change ± 1.5. (n = 3.) (C) Overlap diagram of DEGs between DMEMlo and DMEMhi. (D) Network plot of enriched Reactome terms of DEGs shared between DMEMlo and DMEMhi. (E) Supernatants collected from pHLFs stimulated with TGF-β1 (1 ng/mL) for 48 hours and hydroxyproline quantified using HPLC (n = 3), representative of 5 independent experiments. (F and G) Dot plots showing top 20 enriched KEGG terms in (F) DMEMlo and (G) DMEMhi. Data are presented as mean ± SD and differences evaluated between groups with 2-way ANOVA with Tukey’s multiple-comparison testing. NES, normalized enrichment score.

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