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April 5, 2026Cancer Research0 citations

Abstract 4520: Development of terfenadine-derived small-molecule inhibitors of TFE3-O dimerization for translocation renal cell carcinoma.

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CMChristian MigliareseMAMohd AbdullahaIFIlaria Delle Fontane

Key Points

  • The aim is to optimize terfenadine derivatives to inhibit TFE3 dimerization and improve therapy for translocation renal cell carcinoma.
  • Synthesize and purify terfenadine analogs with specific chemical modifications
  • Assess antiproliferative activity in tRCC cell lines
  • Utilize FRET-based assays to measure TFE3/TFE3-O dimerization inhibition
  • Monitor hERG activity to evaluate cardiotoxicity
  • Two leading terfenadine derivatives showed improved antiproliferative effects with IC50s ∼2 µM compared to terfenadine's ∼7 µM
  • Combination studies with TKIs demonstrated reduced IC50 values when co-treated with terfenadine
  • Inhibition of TFE3 dimerization enhances drug response, suggesting reduced drug sequestration in lysosomes

Abstract

Abstract Translocation renal cell carcinoma (tRCC) is an aggressive kidney cancer subtype with poor clinical outcome and no effective standard therapies. It is characterized by gene fusions involving members of the MiT transcription factor family, most commonly TFE3 fused to various partner genes. Work from our laboratory has previously identified the antihistamine terfenadine as a promising compound capable of inhibiting TFE3 dimerization, highlighting dimerization as a targetable mechanism in tRCC. These findings suggest that disrupting TFE3 fusion protein dimerization may enhance therapeutic response and could be leveraged in combination with existing treatment options, including tyrosine kinase inhibitors (TKIs). The purpose of this study was to optimize terfenadine-derived tool compounds and identify novel small molecules that enhance its antiproliferative activity while reducing terfenadine well-known long QT associated cardiotoxicity. We aimed to determine whether these derivatives selectively inhibit dimerization of TFE3 fusion proteins and improve activity against tRCC diminishing hERG interaction and cardiotoxicity. Two series of terfenadine analogs based on chemical structure modifications were synthesized to evaluate groups specific functional contribution. All compounds were purified and structurally verified by NMR, LTQ mass spectrometry, and HPLC. Their antiproliferative activity was assessed in tRCC cell lines harboring distinct TFE3 fusions (R07: SPFQ-TFE3; UOK-109: NONO-TFE3; UOK-146: PRCC-TFE3). FRET-based assays are being established to measure inhibition of TFE3/TFE3-O dimerization, and hERG activity monitored. Several newly synthesized compounds, in particular two leading candidates exhibited improved antiproliferative effects (IC50s ∼2 µM) as compared to terfenadine (IC50s ∼7 µM). These results provide a foundation for further structural refinement and assessment of pharmacological properties with modifications also aiming to reduce its cardiotoxic effect. Combination studies with TKIs demonstrated that co-treatment with terfenadine significantly reduced IC50 values relative to monotherapy, as confirmed by Combination Index analysis. This supports the hypothesis that inhibiting TFE3 fusion protein dimerization enhances drug response to TKIs, potentially by reducing drug sequestration in the lysosome. In conclusion, this work identifies terfenadine derivatives with improved antiproliferative potential and reduced predicted cardiotoxicity, and highlights TFE3 dimerization as a therapeutically targetable mechanism that may help overcome drug resistance in tRCC. Citation Format: Christian Migliarese, Mohd Abdullaha, Ilaria Delle Fontane, David E. Heppner, Roberto Pili. Development of terfenadine-derived small-molecule inhibitors of TFE3-O dimerization for translocation renal cell carcinoma abstract. In: Proceedings of the American Association for Cancer Research Annual Meeting 2026; Part 1 (Regular Abstracts); 2026 Apr 17-22; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2026;86(7 Suppl):Abstract nr 4520.

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Cite This Study

Migliarese et al. (2026) studied this question.

synapsesocial.com/papers/69d1fd13a79560c99a0a2dd1https://doi.org/10.1158/1538-7445.am2026-4520
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Also Consider

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

  1. 1Abstract 7580: The antihistamine terfenadine inhibits TFE3 dimerization, has antitumor activity and synergizes with tyrosine kinase inhibitors in translocation renal cell carcinoma2024
  2. 2Data from TFE3-Splicing Factor Fusions Represent Functional Drivers and Druggable Targets in Translocation Renal Cell Carcinoma2024
  3. 3Phenotypic screening converges on CDK9 inhibition as a therapeutic strategy in translocation renal cell carcinoma2025 · 1 citations
  4. 473 An EGFR-family Signaling Axis Confers Therapeutic Vulnerability in Translocation RCC2026
  5. 5Abstract B038: TFE3 fusion oncoprotein condensate as a mechanism in translocation renal cell carcinoma2026