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Merck

Proteome Instability Is a Therapeutic Vulnerability in Mismatch Repair-Deficient Cancer.

Cancer cell (2020-02-29)
Daniel J McGrail, Jeannine Garnett, Jun Yin, Hui Dai, David J H Shih, Truong Nguyen Anh Lam, Yang Li, Chaoyang Sun, Yongsheng Li, Rosemarie Schmandt, Ji Yuan Wu, Limei Hu, Yulong Liang, Guang Peng, Eric Jonasch, David Menter, Melinda S Yates, Scott Kopetz, Karen H Lu, Russell Broaddus, Gordon B Mills, Nidhi Sahni, Shiaw-Yih Lin
RESUMO

Deficient DNA mismatch repair (dMMR) induces a hypermutator phenotype that can lead to tumorigenesis; however, the functional impact of the high mutation burden resulting from this phenotype remains poorly explored. Here, we demonstrate that dMMR-induced destabilizing mutations lead to proteome instability in dMMR tumors, resulting in an abundance of misfolded protein aggregates. To compensate, dMMR cells utilize a Nedd8-mediated degradation pathway to facilitate clearance of misfolded proteins. Blockade of this Nedd8 clearance pathway with MLN4924 causes accumulation of misfolded protein aggregates, ultimately inducing immunogenic cell death in dMMR cancer cells. To leverage this immunogenic cell death, we combined MLN4924 treatment with PD1 inhibition and found the combination was synergistic, significantly improving efficacy over either treatment alone.

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