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PROTAC-mediated conditional degradation of the WRN helicase as a potential strategy for selective killing of cancer cells with microsatellite instability. | LitMetric

AI Article Synopsis

  • Some cancer cells that have a condition called microsatellite instability (MSI) can't survive without a protein called WRN, while others without this condition (called microsatellite-stable or MSS) can.
  • Scientists are exploring new ways to create drugs that can target WRN for these MSI cancer cells because normal WRN inhibitors might not work well against them.
  • They designed a special tool called PROTAC that helps chop up WRN specifically in MSI cancer cells, which made those cells very sick, showing this method might be a great way to treat MSI cancers in the future.

Article Abstract

Multiple studies have demonstrated that cancer cells with microsatellite instability (MSI) are intolerant to loss of the Werner syndrome helicase (WRN), whereas microsatellite-stable (MSS) cancer cells are not. Therefore, WRN represents a promising new synthetic lethal target for developing drugs to treat cancers with MSI. Given the uncertainty of how effective inhibitors of WRN activity will prove in clinical trials, and the likelihood of tumours developing resistance to WRN inhibitors, alternative strategies for impeding WRN function are needed. Proteolysis-targeting chimeras (PROTACs) are heterobifunctional small molecules that target specific proteins for degradation. Here, we engineered the WRN locus so that the gene product is fused to a bromodomain (Bd)-tag, enabling conditional WRN degradation with the AGB-1 PROTAC specific for the Bd-tag. Our data revealed that WRN degradation is highly toxic in MSI but not MSS cell lines. In MSI cells, WRN degradation caused G/M arrest, chromosome breakage and ATM kinase activation. We also describe a multi-colour cell-based platform for facile testing of selective toxicity in MSI versus MSS cell lines. Together, our data show that a degrader approach is a potentially powerful way of targeting WRN in MSI cancers and paves the way for the development of WRN-specific PROTAC compounds.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11379953PMC
http://dx.doi.org/10.1038/s41598-024-71160-5DOI Listing

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