WRN inhibition leads to its chromatin-associated degradation via the PIAS4-RNF4-p97/VCP axis

WRN 抑制通过 PIAS4-RNF4-p97/VCP 轴导致其染色质相关降解

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作者:Fernando Rodríguez Pérez, Dean Natwick, Lauren Schiff, David McSwiggen, Alec Heckert, Melina Huey, Huntly Morrison, Mandy Loo, Rafael G Miranda, John Filbin, Jose Ortega, Kayla Van Buren, Danny Murnock, Arnold Tao, Renee Butler, Kylie Cheng, William Tarvestad, Zhengjian Zhang, Eric Gonzalez, Rand M

Abstract

Synthetic lethality provides an attractive strategy for developing targeted cancer therapies. For example, cancer cells with high levels of microsatellite instability (MSI-H) are dependent on the Werner (WRN) helicase for survival. However, the mechanisms that regulate WRN spatiotemporal dynamics remain poorly understood. Here, we used single-molecule tracking (SMT) in combination with a WRN inhibitor to examine WRN dynamics within the nuclei of living cancer cells. WRN inhibition traps the helicase on chromatin, requiring p97/VCP for extraction and proteasomal degradation in a MSI-H dependent manner. Using a phenotypic screen, we identify the PIAS4-RNF4 axis as the pathway responsible for WRN degradation. Finally, we show that co-inhibition of WRN and SUMOylation has an additive toxic effect in MSI-H cells and confirm the in vivo activity of WRN inhibition using an MSI-H mouse xenograft model. This work elucidates a regulatory mechanism for WRN that may facilitate identification of new therapeutic modalities, and highlights the use of SMT as a tool for drug discovery and mechanism-of-action studies.

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