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PMID: 17429401 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Synthetic lethal screen identification of chemosensitizer loci in cancer cells.

Nature ·Vol. 446 ·No. 7137 ·2007-04-12 ·Pages 815-9

Whitehurst AW, Bodemann BO, Cardenas J, Ferguson D, Girard L, Peyton M, Minna JD, Michnoff C, Hao W, Roth MG, Xie XJ, White MA

Abstract

Abundant evidence suggests that a unifying principle governing the molecular pathology of cancer is the co-dependent aberrant regulation of core machinery driving proliferation and suppressing apoptosis. Anomalous proteins engaged in support of this tumorigenic regulatory environment most probably represent optimal intervention targets in a heterogeneous population of cancer cells. The advent of RNA-mediated interference (RNAi)-based functional genomics provides the opportunity to derive unbiased comprehensive collections of validated gene targets supporting critical biological systems outside the framework of preconceived notions of mechanistic relationships. We have combined a high-throughput cell-based one-well/one-gene screening platform with a genome-wide synthetic library of chemically synthesized small interfering RNAs for systematic interrogation of the molecular underpinnings of cancer cell chemoresponsiveness. NCI-H1155, a human non-small-cell lung cancer line, was employed in a paclitaxel-dependent synthetic lethal screen designed to identify gene targets that specifically reduce cell viability in the presence of otherwise sublethal concentrations of paclitaxel. Using a stringent objective statistical algorithm to reduce false discovery rates below 5%, we isolated a panel of 87 genes that represent major focal points of the autonomous response of cancer cells to the abrogation of microtubule dynamics. Here we show that several of these targets sensitize lung cancer cells to paclitaxel concentrations 1,000-fold lower than otherwise required for a significant response, and we identify mechanistic relationships between cancer-associated aberrant gene expression programmes and the basic cellular machinery required for robust mitotic progression.

MeSH Terms
Carcinoma, Non-Small-Cell Lung/drug therapy,genetics,pathology Cell Line, Tumor Cell Survival/drug effects DNA Mutational Analysis Dose-Response Relationship, Drug Genes, Lethal/genetics Humans Lung/drug effects,metabolism,pathology Lung Neoplasms/drug therapy,genetics,pathology Microtubules/drug effects,metabolism Mitosis/drug effects Paclitaxel/pharmacology RNA, Small Interfering/genetics,metabolism Spindle Apparatus/drug effects,metabolism,pathology
Chemicals
RNA, Small Interfering Paclitaxel
Authors & Affiliations
12 authors, click to expand affiliations / ORCID
Whitehurst Angelique W
Department of Cell Biology, University of Texas Southwestern Medical Center, Dallas, Texas 75390, USA.
Bodemann Brian O
Cardenas Jessica
Ferguson Deborah
Girard Luc
Peyton Michael
Minna John D
Michnoff Carolyn
Hao Weihua
Roth Michael G
Xie Xian-Jin
White Michael A
Article Info
Journal
Nature
Abbr.
Nature
ISSN
1476-4687
Published
2007-04-12
Pages
815-9
Language
English
Region
England
NLM ID
0410462
Subset
IM
Grants
NCI NIH HHS · P50 CA070907 · United States
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