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Induction and characterization of taxol-resistance phenotypes with a transiently expressed artificial transcriptional activator library

Cited 20 time in Web of Science Cited 20 time in Scopus
Authors

Lee, Dong-ki; Kim, Yong Ha; Kim, Jin-Soo; Seol, Wongi

Issue Date
2004-08
Publisher
Oxford University Press
Citation
Nucleic Acids Research, Vol.32 No.14, p. e116
Abstract
Phenotype-based functional genomic methods are useful for the identification of genes that are related to a particular biological function or disease. Essential to this approach Is the ability to regulate the expression of selected genes. Artificial transcription factors (ATFs) are key molecular tools that selectively regulate gene expression in vivo. Here, we use an ATF library to identify genes that participate in rendering a cell resistant to the drug Taxol, a potent anti-cancer drug that binds to tubulin and inhibits cell division. The library, which encodes ATFs that activate (rather than inhibit) transcription, was introduced into a HeLa cell line, and Taxol-resistant cells were selected. After eight rounds of selection, we identified two ATFs that significantly increased the level of Taxol resistance (TR) in HeLa cells. Gene expression microarray experiments using these ATFs identified 37 co-regulated genes, including genes already known to participate in TR. This study demonstrates that ATF libraries can be used to induce phenotypic alterations in eukaryotic cells and then identify specific genes that are associated with the phenotype of choice.
ISSN
0305-1048
URI
https://hdl.handle.net/10371/165602
DOI
https://doi.org/10.1093/nar/gnh114
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  • College of Natural Sciences
  • Department of Chemistry
Research Area Biology and Biochemistry

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