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PMID: 16572121 Published · ppublish English Journal Article Research Support, N.I.H., Intramural Research Support, Non-U.S. Gov't

A loss-of-function RNA interference screen for molecular targets in cancer.

Nature ·Vol. 441 ·No. 7089 ·2006-05-04 ·Pages 106-10

Ngo VN, Davis RE, Lamy L, Yu X, Zhao H, Lenz G, Lam LT, Dave S, Yang L, Powell J, Staudt LM

Abstract

The pursuit of novel therapeutic agents in cancer relies on the identification and validation of molecular targets. Hallmarks of cancer include self-sufficiency in growth signals and evasion from apoptosis; genes that regulate these processes may be optimal for therapeutic attack. Here we describe a loss-of-function screen for genes required for the proliferation and survival of cancer cells using an RNA interference library. We used a doxycycline-inducible retroviral vector for the expression of small hairpin RNAs (shRNAs) to construct a library targeting 2,500 human genes. We used retroviral pools from this library to infect cell lines representing two distinct molecular subgroups of diffuse large B-cell lymphoma (DLBCL), termed activated B-cell-like DLBCL and germinal centre B-cell-like DLBCL. Each vector was engineered to contain a unique 60-base-pair 'bar code', allowing the abundance of an individual shRNA vector within a population of transduced cells to be measured using microarrays of the bar-code sequences. We observed that a subset of shRNA vectors was depleted from the transduced cells after three weeks in culture only if shRNA expression was induced. In activated B-cell-like DLBCL cells, but not germinal centre B-cell-like DLBCL cells, shRNAs targeting the NF-kappaB pathway were depleted, in keeping with the essential role of this pathway in the survival of activated B-cell-like DLBCL. This screen uncovered CARD11 as a key upstream signalling component responsible for the constitutive IkappaB kinase activity in activated B-cell-like DLBCL. The methodology that we describe can be used to establish a functional taxonomy of cancer and help reveal new classes of therapeutic targets distinct from known oncogenes.

MeSH Terms
Adaptor Proteins, Signal Transducing/deficiency,genetics,metabolism Apoptosis Regulatory Proteins/deficiency,genetics,metabolism B-Cell CLL-Lymphoma 10 Protein CARD Signaling Adaptor Proteins Caspases Cell Line, Tumor Cell Proliferation Cell Survival/genetics Drug Design Guanylate Cyclase/deficiency,genetics,metabolism Humans Lymphoma, B-Cell/genetics,metabolism,pathology Lymphoma, B-Cell, Marginal Zone/genetics,metabolism Mucosa-Associated Lymphoid Tissue Lymphoma Translocation 1 Protein NF-kappa B/metabolism Neoplasm Proteins/deficiency,genetics,metabolism Neoplasms/genetics,metabolism,pathology,therapy RNA Interference Substrate Specificity
Chemicals
Adaptor Proteins, Signal Transducing Apoptosis Regulatory Proteins B-Cell CLL-Lymphoma 10 Protein BCL10 protein, human CARD Signaling Adaptor Proteins NF-kappa B Neoplasm Proteins Caspases MALT1 protein, human Mucosa-Associated Lymphoid Tissue Lymphoma Translocation 1 Protein CARD11 protein, human Guanylate Cyclase
Authors & Affiliations
11 authors, click to expand affiliations / ORCID
Ngo Vu N
Metabolism Branch, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.
Davis R Eric
Lamy Laurence
Yu Xin
Zhao Hong
Lenz Georg
Lam Lloyd T
Dave Sandeep
Yang Liming
Powell John
Staudt Louis M
Article Info
Journal
Nature
Abbr.
Nature
ISSN
1476-4687
Published
2006-05-04
Epub
2006-00-29
Pages
106-10
Language
English
Region
England
NLM ID
0410462
Subset
IM
Grants
Intramural NIH HHS · United States
Databases
GEO
Corrections
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