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Updated: Jul 3, 2026

Identification of Transcription Factor Regulators using Medium-Throughput Screening of Arrayed Libraries and a Dual-Luciferase-Based Reporter
Published on: March 27, 2020
A functional genome-wide RNAi screen identifies TAF1 as a regulator for apoptosis in response to genotoxic stress
Junko Kimura1, Su Tien Nguyen, Hanshao Liu
1Department of Molecular Genetics, Medical Research Institute, Tokyo Medical and Dental University, Yushima 1-5-45, Bunkyo-ku, Tokyo 113-8510, Japan.
Abstract:
Evasion from apoptotic cell death is a characteristic of cancer; genes that modulate this process may be optimal for therapeutic attack. Identifying key regulators of apoptosis is thus a central goal in cancer therapy. Here, we describe a loss-of-function screen that uses RNA interference libraries to identify genes required for induction of apoptosis. We used a short-hairpin RNA expressing vector with high gene-expression silencing activity that contained fetal brain cDNAs. Survived cells from genotoxic stress were isolated to determine knock-down of molecules that are crucial for induction of apoptosis. We identified TBP-associated factor 1 (TAF1), a gene previously implicated as an essential component of transcription machinery. Depletion of TAF1 was associated with substantial attenuation of apoptosis induced by oxidative as well as genotoxic stress. Microarray analysis further demonstrated that a number of genes were transcriptionally declined in cells silenced for TAF1. Surprisingly, knocking down TAF1 exhibited a marked decrease in p27(Kip1) expression, allowing cells resistant from oxidative stress-induced apoptosis. These results suggest that TAF1 regulates apoptosis by controlling p27(Kip1) expression. Our system provides a novel approach to identifying candidate genes that modulate apoptosis.
Insights
Cancer cells evade apoptosis, a key therapeutic target. Researchers identified TBP-associated factor 1 (TAF1) as crucial for apoptosis induction, finding its depletion increases resistance to cell death by affecting p27(Kip1) expression.
Area of Science:
- Molecular Biology
- Cancer Research
- Genetics
Background:
- Cancer cells evade apoptosis, making apoptosis regulators potential therapeutic targets.
- Identifying genes that control apoptosis is critical for developing new cancer therapies.
Purpose of the Study:
- To identify genes essential for inducing apoptosis using a loss-of-function screen.
- To investigate the role of TBP-associated factor 1 (TAF1) in apoptosis regulation.
Main Methods:
- Utilized RNA interference (RNAi) libraries with short-hairpin RNA (shRNA) vectors for gene silencing.
- Performed loss-of-function screens on cells surviving genotoxic stress to identify apoptosis regulators.
- Conducted microarray analysis to assess gene expression changes upon TAF1 depletion.
Main Results:
- Identified TBP-associated factor 1 (TAF1) as a key regulator required for apoptosis induction.
- TAF1 depletion significantly attenuated apoptosis induced by oxidative and genotoxic stress.
- Knockdown of TAF1 led to decreased p27(Kip1) expression, conferring resistance to oxidative stress-induced apoptosis.
Conclusions:
- TAF1 plays a critical role in regulating apoptosis, partly through controlling p27(Kip1) expression.
- The developed RNAi screening system offers a novel approach for discovering apoptosis-modulating genes in cancer therapy.
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