S6K1 is a Targetable Vulnerability in Tumors Exhibiting Plasticity and Therapy Resistance

Saptadwipa Ganguly1, Ravshan Burikhanov2, Vitaliy M Sviripa3

  • 1Department of Toxicology and Cancer Biology, College of Medicine, University of Kentucky, Lexington, Kentucky, USA.

Insights

A novel drug, Super-ebastine, targets S6K1 to overcome cancer therapy resistance. This discovery offers a new therapeutic vulnerability for treating tumors with intrinsic or acquired resistance mechanisms.

Area of Science:

  • Oncology
  • Chemical Biology
  • Molecular Biology

Background:

  • Tumors often develop resistance to treatment due to cancer cell plasticity and heterogeneity.
  • Identifying novel therapeutic targets is crucial for overcoming treatment refractory cancer clones.

Purpose of the Study:

  • To identify essential protein targets in cancer cells with diverse mutations and resistance mechanisms.
  • To discover novel therapeutic strategies for overcoming cancer treatment resistance.

Main Methods:

  • Chemical biology screening of a drug library against cancer cell models.
  • PRISM analysis of over 900 cancer cell lines to determine drug target range.
  • RNA-sequencing, molecular modeling, and genetic validation to identify and confirm RPS6KB1 (S6K1) as a key target.

Main Results:

  • A novel ebastine derivative, Super-ebastine (Super-EBS), inhibited cancer cell viability across diverse mutations and resistance models.
  • Super-EBS demonstrated broad sensitivity across >95% of tested cancer cell lines, targeting S6K1.
  • Inhibition of S6K1 phosphorylation by Super-EBS induced apoptosis via the Cdc42/Rac-1/p-PAK1 pathway, and S6K1 knockout abrogated tumor growth in vivo.

Conclusions:

  • Ribosomal protein S6 kinase B1 (S6K1) is a critical therapeutic vulnerability in tumors.
  • Targeting S6K1 with agents like Super-EBS can overcome intrinsic and acquired treatment resistance.
  • This study validates S6K1 as a promising target for novel cancer therapies.

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