AI Article Synopsis

  • Scientists studied a protein called SMARCA4 that often has mutations in cancer and found that cancer cells rely on another protein called SMARCA2 when SMARCA4 is broken.
  • They created a special molecule called A947 that can specifically target and get rid of SMARCA2 without affecting other proteins.
  • Tests showed that A947 works well against cancer cells with broken SMARCA4, offering hope for new treatments for patients with this kind of cancer.

Article Abstract

The mammalian SWItch/Sucrose Non-Fermentable (SWI/SNF) helicase SMARCA4 is frequently mutated in cancer and inactivation results in a cellular dependence on its paralog, SMARCA2, thus making SMARCA2 an attractive synthetic lethal target. However, published data indicates that achieving a high degree of selective SMARCA2 inhibition is likely essential to afford an acceptable therapeutic index, and realizing this objective is challenging due to the homology with the SMARCA4 paralog. Herein we report the discovery of a potent and selective SMARCA2 proteolysis-targeting chimera molecule (PROTAC), A947. Selective SMARCA2 degradation is achieved in the absence of selective SMARCA2/4 PROTAC binding and translates to potent in vitro growth inhibition and in vivo efficacy in SMARCA4 mutant models, compared to wild type models. Global ubiquitin mapping and proteome profiling reveal no unexpected off-target degradation related to A947 treatment. Our study thus highlights the ability to transform a non-selective SMARCA2/4-binding ligand into a selective and efficacious in vivo SMARCA2-targeting PROTAC, and thereby provides a potential new therapeutic opportunity for patients whose tumors contain SMARCA4 mutations.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9649729PMC
http://dx.doi.org/10.1038/s41467-022-34562-5DOI Listing

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