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November 14, 2025Nature Communications0 citationsOpen Access

The SLC1A1/EAAT3 dicarboxylic amino acid transporter is an epigenetically dysregulated nutrient carrier that sustains oncogenic metabolic programs

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TGTreg GrubbPKPooneh KoochakiSMSayed Matar

Key Points

  • This research investigates the role of SLC1A1 in oncogenic metabolism within pVHL-deficient ccRCC.
  • Conducted an in vivo positive selection open reading frame (ORF) screen in pVHL-proficient cells.
  • Mechanistic studies performed in pVHL-deficient cells to assess SLC1A1 function.
  • Evaluated effects of SLC1A1 inactivation on ccRCC growth and response to drugs.
  • SLC1A1 inactivation depletes metabolites important for the tricarboxylic acid cycle.
  • Higher SLC1A1 expression correlates with advanced metastatic disease and reduced immune infiltration.
  • SLC1A1 inactivation reduces lung metastasis and tumor growth in animal models.

Abstract

Epigenetic dysregulation, including accumulation of Histone H3 lysine 27 acetylation (H3K27ac), is a hallmark of pVHL-deficient clear cell Renal Cell Carcinomas (ccRCCs). Using an in vivo positive selection ORF screen in poorly tumorigenic pVHL-proficient cells and mechanistic studies in pVHL-deficient cells, we discovered that the aspartate (Asp) and glutamate (Glu) transporter, SLC1A1/EAAT3, is a metabolic dependency in ccRCC. pVHL loss promotes Hypoxia Inducible Factor (HIF)-independent SLC1A1 expression via H3K27ac dysregulation. SLC1A1 inactivation, genetically or pharmacologically, depletes Asp/Glu-derived metabolites (e.g., Tricarboxylic acid cycle and nucleotide intermediates), impedes ccRCC growth, and sensitizes ccRCCs to anti-metabolite drugs (e.g., glutaminase blockers). In human tumors, higher SLC1A1 expression is associated with reduced immune infiltration, oncogenic metabolic programs, and advanced stage/metastatic disease. Finally, in ccRCC animal models, SLC1A1 inactivation diminishes lung metastasis and the outgrowth of established renal tumors. Altogether, our studies credential SLC1A1 as an actionable, HIF-independent, metabolic dependency in pVHL-deficient ccRCCs.

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Cite This Study

Grubb et al. (2025) studied this question.

synapsesocial.com/papers/69251999c0ce034ddc3539fehttps://doi.org/10.1038/s41467-025-64983-x
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