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The protein phosphatase 2A-B56α complex regulates N-Myc degradation in neuroblastoma

Molecular Therapy. 2026-02; 
Brian D Tran, Irene Peris, Ethan Wurman, Averie Huang, Gabrielle Hodges Onishi, Jiang Hu, Rita A Avelar, Erika A Newman, Analisa DiFeo, Caitlin M O'Connor, Goutham Narla Rogel Cancer Center, University of Michigan, Ann Arbor, Michigan, USA; Division of Genetic Medicine, Department of Internal Medicine, University of Michigan
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Abstract

High-risk neuroblastoma is one of the most common and deadliest pediatric solid tumors. Proliferation, differentiation, and treatment resistance have been linked to the amplification of MYCN. Although N-Myc has proven to be a difficult therapeutic target, our group and others have previously demonstrated that a small-molecule targeting PP2A, DT-061, drives c-Myc degradation in MYC-driven cancers. This results from its ability to bias PP2A toward heterotrimers that contain the B56α regulatory subunit, which dephosphorylates the S62 c-Myc residue, affecting protein stability and driving its proteasomal degradation. Interestingly, despite a high degree of sequence homology in the phosphodegron of c-Myc and N-Myc,... More

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