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An Oncogenomics-Based In Vivo RNAi Screen Identifies Tumor Suppressors in Liver Cancer

  • Lars Zender
  • , Wen Xue
  • , Johannes Zuber
  • , Camile P. Semighini
  • , Alexander Krasnitz
  • , Beicong Ma
  • , Peggy Zender
  • , Stefan Kubicka
  • , John M. Luk
  • , Peter Schirmacher
  • , W. Richard McCombie
  • , Michael Wigler
  • , James Hicks
  • , Gregory J. Hannon
  • , Scott Powers
  • , Scott W. Lowe
  • Cold Spring Harbor Laboratory
  • Hannover Medical School
  • The University of Hong Kong
  • Heidelberg University 
  • Howard Hughes Medical Institute

Research output: Contribution to journalArticlepeer-review

395 Scopus citations

Abstract

Cancers are highly heterogeneous and contain many passenger and driver mutations. To functionally identify tumor suppressor genes relevant to human cancer, we compiled pools of short hairpin RNAs (shRNAs) targeting the mouse orthologs of genes recurrently deleted in a series of human hepatocellular carcinomas and tested their ability to promote tumorigenesis in a mosaic mouse model. In contrast to randomly selected shRNA pools, many deletion-specific pools accelerated hepatocarcinogenesis in mice. Through further analysis, we identified and validated 13 tumor suppressor genes, 12 of which had not been linked to cancer before. One gene, XPO4, encodes a nuclear export protein whose substrate, EIF5A2, is amplified in human tumors, is required for proliferation of XPO4-deficient tumor cells, and promotes hepatocellular carcinoma in mice. Our results establish the feasibility of in vivo RNAi screens and illustrate how combining cancer genomics, RNA interference, and mosaic mouse models can facilitate the functional annotation of the cancer genome.

Original languageEnglish
Pages (from-to)852-864
Number of pages13
JournalCell
Volume135
Issue number5
DOIs
StatePublished - Nov 28 2008

Keywords

  • CELLCYCLE
  • HUMDISEASE

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