A selective S-acyltransferase inhibitor suppresses tumor growth

Insights

Researchers identified a novel inhibitor, SD-066-4, targeting ZDHHC20 to block lung tumor growth. This S-acylation inhibitor shows promise for treating Kras-mutant lung cancers and improving patient survival.

Area of Science:

  • Biochemistry and Molecular Biology
  • Oncology
  • Drug Discovery

Background:

  • S-acyltransferases are crucial for physiological processes, including oncogenic signaling.
  • The lack of specific S-acylation inhibitors hinders therapeutic development for diseases.
  • Targeting S-acyltransferases offers potential benefits for human diseases, but remains largely unexplored.

Purpose of the Study:

  • To identify and characterize a novel, orally bioavailable inhibitor of S-acyltransferases.
  • To investigate the therapeutic potential of inhibiting ZDHHC20 in Kras-mutant lung cancer.
  • To explore the clinical relevance of ZDHHC20 and ZDHHC14 in lung cancer patient outcomes.

Main Methods:

  • Identification of an orally bioavailable acyltransferase inhibitor, SD-066-4.
  • Characterization of SD-066-4's isoform selectivity through alanine residue interaction.
  • Assessment of SD-066-4's effect on EGFR S-acylation in Kras mutant cells.
  • Evaluation of SD-066-4's efficacy in blocking Kras mutant lung tumor growth and survival in preclinical models.
  • Analysis of lung cancer patient data for correlations between ZDHHC20/ZDHHC14 deletions, Kras alterations, and survival benefit.

Main Results:

  • SD-066-4 was identified as an orally bioavailable inhibitor of the acyltransferase ZDHHC20.
  • A specific alanine residue was found to confer isoform selectivity to SD-066-4.
  • SD-066-4 effectively reduced EGFR S-acylation in Kras mutant cells.
  • The inhibitor blocked Kras mutant lung tumor growth and extended overall survival.
  • Lung cancer patients with ZDHHC20/ZDHHC14 deletions and Kras alterations showed a significant survival benefit.

Conclusions:

  • SD-066-4 is a potent and selective inhibitor of ZDHHC20 with demonstrated efficacy against Kras-mutant lung tumors.
  • Pharmacological inhibition of ZDHHC20 represents a promising therapeutic strategy for Kras-mutant lung cancer.
  • The findings highlight the translational importance of ZDHHC20 and ZDHHC14 in lung cancer treatment and patient stratification.

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