清脆的
抑制器
生物
基因组
淋巴瘤
遗传学
体内
计算生物学
基因组编辑
癌症研究
基因
免疫学
作者
Margaret A. Potts,Shinsuke Mizutani,Yexuan Deng,Srimayee Vaidyanathan,Keziah E. Ting,Göknur Giner,Shruti Sridhar,Gautam N. Shenoy,Yang Liao,Sarah T. Diepstraten,Andrew J. Kueh,Martin Pál,Geraldine Healey,Lin Tai,Zilu Wang,Christina Koenig,Deeksha Kaloni,Lauren Whelan,Michael J. G. Milevskiy,Hannah D. Coughlan
标识
DOI:10.1038/s41467-025-62615-y
摘要
Identifying tumor suppressor genes is predicted to inform on the development of novel strategies for cancer therapy. To identify new lymphoma driving processes that cooperate with oncogenic MYC, which is abnormally highly expressed in ~70% of human cancers, we use a genome-wide CRISPR gene knockout screen in Eµ-Myc;Cas9 transgenic hematopoietic stem and progenitor cells in vivo. We discover that loss of any of the GATOR1 complex components - NPRL3, DEPDC5, NPRL2 - significantly accelerates c-MYC-driven lymphoma development in mice. MYC-driven lymphomas lacking GATOR1 display constitutive mTOR pathway activation and are highly sensitive to mTOR inhibitors, both in vitro and in vivo. These findings identify GATOR1 suppression of mTORC1 as a tumor suppressive mechanism in MYC-driven lymphomagenesis and suggest an avenue for therapeutic intervention in GATOR1-deficient lymphomas through mTOR inhibition.
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