TKI Type Switching Overcomes ROS1 L2086F in ROS1 Fusion-Positive Cancers

Abstract

Insights

ROS1 L2086F mutations confer resistance to type I tyrosine kinase inhibitors (TKIs) in non-small cell lung cancer. Type II TKI cabozantinib and type I FLT3 inhibitor gilteritinib show efficacy against these resistant mutations.

Area of Science:

  • Oncology
  • Molecular Biology
  • Drug Discovery

Background:

  • Tyrosine kinase inhibitors (TKIs) are effective against ROS1-positive non-small cell lung cancer (NSCLC).
  • Acquired resistance to TKIs limits treatment durability.
  • The resistance mechanisms of next-generation ROS1 TKIs are not well understood.

Approach:

  • Compared type I and type II TKIs against ROS1 wildtype and mutant Ba/F3 cells.
  • Validated findings in NIH3T3 colony formation assays and in vivo tumor growth models.
  • Utilized CRISPR/Cas9 gene editing to create patient-derived cell lines with specific ROS1 mutations.
  • Performed molecular modeling to understand TKI binding in wildtype and mutant ROS1.
  • Reviewed clinical cases of TKI-resistant ROS1-mutant NSCLC treated with cabozantinib.

Key Points:

  • ROS1 L2086F mutations confer resistance to type I TKIs, including later-generation inhibitors.
  • Type II TKIs (cabozantinib, merestinib) retain activity against ROS1 L2086F.
  • Gilteritinib, a type I FLT3 inhibitor, also inhibits wildtype and L2086F mutant ROS1.
  • ROS1 G2032R mutations confer resistance to gilteritinib.
  • Molecular modeling explains the differential activity of TKIs based on kinase conformation.

Conclusions:

  • Cabozantinib and gilteritinib are effective against ROS1 L2086F mutations.
  • Cabozantinib demonstrated clinical activity in patients with TKI-resistant ROS1 L2086F NSCLC.
  • Gilteritinib represents a potential alternative treatment option.
  • There is an ongoing need for more selective and better-tolerated TKIs to overcome intrinsic resistance mutations like ROS1 L2086F.