PRMT5 activates AKT via methylation to promote tumor metastasis

Author:

Huang Lei,Zhang Xiao-Ou,Rozen Esteban J.,Sun Xiaomei,Sallis Benjamin,Verdejo-Torres Odette,Wigglesworth Kim,Moon Daniel,Huang Tingting,Cavaretta John P.,Wang Gang,Zhang Lei,Shohet Jason M.ORCID,Lee Mary M.ORCID,Wu QiongORCID

Abstract

AbstractProtein arginine methyltransferase 5 (PRMT5) is the primary methyltransferase generating symmetric-dimethyl-arginine marks on histone and non-histone proteins. PRMT5 dysregulation is implicated in multiple oncogenic processes. Here, we report that PRMT5-mediated methylation of protein kinase B (AKT) is required for its subsequent phosphorylation at Thr308 and Ser473. Moreover, pharmacologic or genetic inhibition of PRMT5 abolishes AKT1 arginine 15 methylation, thereby preventing AKT1 translocation to the plasma membrane and subsequent recruitment of its upstream activating kinases PDK1 and mTOR2. We show that PRMT5/AKT signaling controls the expression of the epithelial-mesenchymal-transition transcription factors ZEB1, SNAIL, and TWIST1. PRMT5 inhibition significantly attenuates primary tumor growth and broadly blocks metastasis in multiple organs in xenograft tumor models of high-risk neuroblastoma. Collectively, our results suggest that PRMT5 inhibition augments anti-AKT or other downstream targeted therapeutics in high-risk metastatic cancers.

Funder

UMASS | University of Massachusetts Medical School

Hyundai Motor Group | Hyundai Motor America | Hyundai Hope On Wheels

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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