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April 23, 2026International Journal of Molecular Sciences0 citationsOpen Access

Identification of ANT2 as a Druggable Target for Endocrine-Resistant ERα-Positive Breast Cancer

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EIErika IguchiMWMotoki WatanabeKKKaito Kobayashi

Key Points

  • The study aims to identify ANT2 as a viable target for treating endocrine-resistant ERα-positive breast cancer.
  • Screened natural compounds in human ERα-positive breast cancer cells.
  • Conducted chemoproteome analysis with POH-immobilized nanomagnetic beads.
  • Performed molecular dynamics simulations to predict POH binding to ANT2.
  • Perillyl alcohol (POH) reduces ERα protein levels and targets ANT2.
  • High ANT2 expression correlates with poor prognosis in ERα-positive breast cancer.
  • ANT2 depletion leads to increased lipid droplet accumulation in Fulvestrant-resistant cells.

Abstract

Endocrine therapy is the mainstay for estrogen receptor (ER) α-positive breast cancer (BC), yet many patients display acquired resistance. We then screened natural compounds using human ERα-positive BC cells and identified perillyl alcohol (POH), a monoterpene from perilla, that reduces ERα protein levels. Chemoproteome analysis using POH-immobilized nanomagnetic beads revealed adenine nucleotide translocase 2 (ANT2), a mitochondrial inner membrane protein, as a direct target of POH. Molecular dynamics (MD) simulations predicted POH binding to the central pore of ANT2, which functions in ATP transport. ANT2 depletion reduced ERα levels, and public datasets indicate that high ANT2 expression correlates with poor prognosis in ERα-positive BC. POH also inhibited the growth of Tamoxifen- and Fulvestrant-resistant BC cells. RNA sequencing showed that fatty acid elongation-related genes were upregulated in Fulvestrant-resistant cells but downregulated by ANT2 depletion. Both ANT2 depletion and POH treatment led to the accumulation of intracellular lipid droplets in Fulvestrant-resistant cells, consistent with impaired fatty acid elongation. Finally, in silico screening using MD simulations identified venetoclax and nystatin as potential ANT2 pore binders. Both compounds reduced ERα levels in ERα-positive BC cells and increased lipid droplet formation in Fulvestrant-resistant cells. These findings highlight ANT2 as a druggable target against endocrine-resistant BC.

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Cite This Study

Iguchi et al. (2026) studied this question.

synapsesocial.com/papers/69e9bb6285696592c86ed1e1https://doi.org/10.3390/ijms27083704
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Abstract 2282: Targeting estrogen receptor mutations and aberrant myelopoiesis in hormone resistant breast cancer2026
  2. 2Androgen receptors promote oxidative phosphorylation and resistance to palmitate lipotoxicity in ER-mutant breast cancer2025
  3. 3Discovery of Novel ERα and Aromatase Dual-Targeting PROTAC Degraders to Overcome Endocrine-Resistant Breast Cancer2024 · 38 citations
  4. 4Abstract PS2-11-17: Engineered EVs-mediated miR-222 targeting PTEN/FN1 axis reverses anthracycline resistance in HER2-negative breast cancer2026
  5. 5Abstract 2290: Therapeutic targeting of ATAD2 in endocrine-resistant breast cancer2026