The amino acid transporter SLC7A11 expression in breast cancer

Preyanka Nath1, Lutfi H Alfarsi1, Rokaya El-Ansari1

  • 1Nottingham Breast Cancer Research Centre, Academic Unit of Translational Medical Sciences, School of Medicine, University of Nottingham Biodiscovery Institute, Nottingham, UK.

Cancer Biology & Therapy
|December 11, 2023
PubMed

Insights

This study reveals that SLC7A11, an amino acid transporter, is highly expressed in aggressive breast cancer (BC) subtypes and linked to poor outcomes. Targeting SLC7A11 may offer new therapeutic strategies for breast cancer patients.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Metabolism

Background:

  • Breast cancer (BC) exhibits diverse molecular profiles, necessitating targeted therapeutic strategies.
  • Metabolic reprogramming is a hallmark of cancer, offering potential therapeutic targets.
  • SLC7A11, an amino acid transporter, is crucial for cancer cell metabolism.

Purpose of the Study:

  • To comprehensively analyze SLC7A11 expression and its role across different breast cancer subtypes.
  • To investigate the association of SLC7A11 with genomic alterations, clinical outcomes, and immune infiltrates in BC.
  • To explore SLC7A11 as a potential therapeutic target in breast cancer.

Main Methods:

  • Analysis of SLC7A11 gene copy number and mRNA expression in large BC cohorts (METABRIC, Gene Expression Miner).
  • Assessment of SLC7A11 protein levels via immunohistochemistry.
  • Exploration of DNA methylation patterns (TCGA) and immune cell infiltration (TIMER).

Main Results:

  • High SLC7A11 mRNA and protein expression correlated with high tumor grade and poor outcomes.
  • SLC7A11 copy number gain observed in HER2+ tumors; higher mRNA expression in basal-like/triple-negative (TN) and luminal B subtypes.
  • High SLC7A11 protein expression predominantly in Estrogen Receptor (ER)-negative and TN BC.
  • SLC7A11 positively correlated with amino acid transporters, glutamine metabolism enzymes, and immune infiltrates (neutrophils, macrophages).

Conclusions:

  • SLC7A11 plays a significant role in breast cancer metabolism and progression, with differential expression across subtypes.
  • SLC7A11 is associated with aggressive BC subtypes and potentially influences tumor immunity.
  • Further research into SLC7A11 mechanisms is warranted to develop novel therapeutic strategies for breast cancer.

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