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USP7 Cooperates with NOTCH1 to Drive the Oncogenic Transcriptional Program in T-Cell Leukemia

Authors :
Carlos A. Martinez
Valentina Serafin
John D. Crispino
Radhika Rawat
Geert Berx
Elizabeth T. Bartom
Stacy A. Marshall
Kenneth K. Wang
Neil L. Kelleher
Beatrix Ueberheide
Benedetta Accordi
Ivan Sokirniy
Lu Wang
Beat Bornhauser
Alexandros Strikoudis
Paul M. Thomas
Nobuko Hijiya
Qi Jin
Stephen Kelly
Jean-Pierre Bourquin
Young Ah Goo
Emily J. Rendleman
Charles Grove
Suresh Kumar
Christine Mantis
Sofie Peirs
Silvia Bresolin
Maddalena Paganin
Joseph Weinstock
Clayton K. Collings
Giuseppe Basso
Ali Shilatifard
Hui Wang
Megan R. Johnson
Nebiyu Abshiru
Jian Wu
Blanca Teresa Gutierrez Diaz
Niels Vandamme
Yoh Hei Takahashi
Panagiotis Ntziachristos
Pieter Van Vlierberghe
Steven Goosens
Feng Wang
Irawati Kandela
Andrew Volk
Kelly M. Arcipowski
Yixing Zhu
Source :
Clinical cancer research : an official journal of the American Association for Cancer Research. 25(1)
Publication Year :
2018

Abstract

Purpose: T-cell acute lymphoblastic leukemia (T-ALL) is an aggressive disease, affecting children and adults. Chemotherapy treatments show high response rates but have debilitating effects and carry risk of relapse. Previous work implicated NOTCH1 and other oncogenes. However, direct inhibition of these pathways affects healthy tissues and cancer alike. Our goal in this work has been to identify enzymes active in T-ALL whose activity could be targeted for therapeutic purposes. Experimental Design: To identify and characterize new NOTCH1 druggable partners in T-ALL, we coupled studies of the NOTCH1 interactome to expression analysis and a series of functional analyses in cell lines, patient samples, and xenograft models. Results: We demonstrate that ubiquitin-specific protease 7 (USP7) interacts with NOTCH1 and controls leukemia growth by stabilizing the levels of NOTCH1 and JMJD3 histone demethylase. USP7 is highly expressed in T-ALL and is transcriptionally regulated by NOTCH1. In turn, USP7 controls NOTCH1 levels through deubiquitination. USP7 binds oncogenic targets and controls gene expression through stabilization of NOTCH1 and JMJD3 and ultimately H3K27me3 changes. We also show that USP7 and NOTCH1 bind T-ALL superenhancers, and inhibition of USP7 leads to a decrease of the transcriptional levels of NOTCH1 targets and significantly blocks T-ALL cell growth in vitro and in vivo. Conclusions: These results provide a new model for USP7 deubiquitinase activity through recruitment to oncogenic chromatin loci and regulation of both oncogenic transcription factors and chromatin marks to promote leukemia. Our studies also show that targeting USP7 inhibition could be a therapeutic strategy in aggressive leukemia.

Details

ISSN :
15573265
Volume :
25
Issue :
1
Database :
OpenAIRE
Journal :
Clinical cancer research : an official journal of the American Association for Cancer Research
Accession number :
edsair.doi.dedup.....0fe9d4b79c4cd094fd95ee69831bada5