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Data from In Vivo Modeling of CLL Transformation to Richter Syndrome Reveals Convergent Evolutionary Paths and Therapeutic Vulnerabilities

Authors :
Catherine J. Wu
Ruben D. Carrasco
Donna S. Neuberg
Ivana Bozic
Kenneth J. Livak
Gad Getz
Matthew S. Davids
Eugen Tausch
Stephan Stilgenbauer
Pierre Feugier
Giorgio Inghirami
Silvia Deaglio
Tiziana Vaisitti
Haoxiang Lyu
Shuqiang Li
Binyamin A. Knisbacher
Mohamed Uduman
Elizabeth Witten
Fara Faye D. Regis
Leah Billington
Heather Joyal
Jackson Southard
Kaitlyn Baranowski
María Hernández-Sánchez
Fabienne Lucas
Romain Guieze
Julien Broséus
Erin M. Parry
Geoffrey Fell
Alanna Sholokhova
Sébastien Hergalant
Neil Ruthen
Robert A. Redd
Livius Penter
Kendell Clement
Michaela Gruber
Gabriela Brunsting Hoffmann
Shanye Yin
Tomasz Sewastianik
Elisa ten Hacken
Publication Year :
2023
Publisher :
American Association for Cancer Research (AACR), 2023.

Abstract

Transformation to aggressive disease histologies generates formidable clinical challenges across cancers, but biological insights remain few. We modeled the genetic heterogeneity of chronic lymphocytic leukemia (CLL) through multiplexed in vivo CRISPR-Cas9 B-cell editing of recurrent CLL loss-of-function drivers in mice and recapitulated the process of transformation from indolent CLL into large cell lymphoma [i.e., Richter syndrome (RS)]. Evolutionary trajectories of 64 mice carrying diverse combinatorial gene assortments revealed coselection of mutations in Trp53, Mga, and Chd2 and the dual impact of clonal Mga/Chd2 mutations on E2F/MYC and interferon signaling dysregulation. Comparative human and murine RS analyses demonstrated tonic PI3K signaling as a key feature of transformed disease, with constitutive activation of the AKT and S6 kinases, downmodulation of the PTEN phosphatase, and convergent activation of MYC/PI3K transcriptional programs underlying enhanced sensitivity to MYC/mTOR/PI3K inhibition. This robust experimental system presents a unique framework to study lymphoid biology and therapy.Significance:Mouse models reflective of the genetic complexity and heterogeneity of human tumors remain few, including those able to recapitulate transformation to aggressive disease histologies. Herein, we model CLL transformation into RS through multiplexed in vivo gene editing, providing key insight into the pathophysiology and therapeutic vulnerabilities of transformed disease.This article is highlighted in the In This Issue feature, p. 101

Details

ISSN :
26433230
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....148e97f2d0bfc152eeb638632ab1d55c
Full Text :
https://doi.org/10.1158/2643-3230.c.6551159