MedicineChemistry

F. I. Layng, Huiyu Ren, N. Bakas, Dhanya R. Panickar, Lester J. Lambert, Maria Celeridad, Jiaqian Wu, L. De Backer, Preeti Chandrachud, Allison S. Limpert, Mitchell Vamos, Apirat Chaikuad, B. B. Verdugo, Patrick M. Hagan, Sonja N. Brun, L. Tautz, Stefan Knapp, R. Shaw, Guy S. Salvesen, D. Sheffler, Nicholas D. P. Cosford

2026.2.12ACS Chemical Biology

DOI: 10.1021/acschembio.5c00711

tlooto Summary

Design, synthesis, and characterization of SBP-5147 and SBP-7501 are reported, two new dual ULK1/2 inhibitors that are cytotoxic against NSCLC cells, inhibit autophagic flux in A549 cells, and present greater oral exposure than SBP-7455 at a lower dose.

Abstract

Autophagy inhibition represents a promising therapeutic approach for the management of various cancers including nonsmall cell lung cancer (NSCLC). We previously reported SBP-7455, a dual inhibitor of unc-51-like kinase 1 (ULK1) and its homologue ULK2 and described its effects on triple-negative breast cancer (TNBC) cells. Herein we report the design, synthesis, and characterization of SBP-5147 and SBP-7501, two new dual ULK1/2 inhibitors that are cytotoxic against NSCLC cells, inhibit autophagic flux in A549 cells, and present greater oral exposure than SBP-7455 at a lower dose. In addition, SBP-5147 effectively modulates autophagy and increases the expression of major histocompatibility complex (MHC) class I in NSCLC cells, which may support the rationale for ULK1/2 inhibition as a strategy to overcome resistance to immunotherapy. Together these data support the use of ULK inhibitors as part of a cancer treatment strategy, either as a single agent or in combination with current therapies.

Citation format

LAYNG, F. I., et al. Synthesis and characterization of ULK1/2 kinase inhibitors that inhibit autophagy and upregulate expression of major histocompatibility complex i for the treatment of non-small cell lung cancer. ACS Chemical Biology, 2026, 21(3): 469–489.