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Updated: Jul 16, 2026

Identification of Transcription Factor Regulators using Medium-Throughput Screening of Arrayed Libraries and a Dual-Luciferase-Based Reporter
Published on: March 27, 2020
Targeting transcription factors for cancer gene therapy
Towia A Libermann1, Luiz F Zerbini
1BIDMC Genomics Center, Beth Israel Deaconess Medical Center and Harvard Medical School, 4 Blackfan Circle, Boston, Massachusetts 02115, USA.
Abstract:
A high proportion of oncogenes and tumor suppressor genes encode transcription factors. Deregulated expression or activation and inactivation of transcription factors as well as mutations and translocations play critical roles in tumorigenesis. Furthermore, the majority of oncogenic signaling pathways converge on sets of transcription factors that ultimately control gene expression patterns resulting in tumor formation and progression as well as metastasis. Under normal physiological conditions whole sets of genes with similar functions are regulated by highly specific, tightly regulated upstream transcriptional regulators, whereas in cancer aberrant activation of these transcription factors leads to deregulated expression of multiple gene sets associated with tumor development and progression. The activity of these transcription factors can be modulated by multiple mechanisms including posttranslational modifications. Activation or inactivation of transcription factors promote cancer development, cell survival and proliferation and induce tumor angiogenesis. Since many of these transcription factors are inactive under normal physiological conditions and their expression and activities are tightly regulated, these transcription factors represent highly desirable and logical points of therapeutical interference in cancer development and progression. Three major families of transcription factors have emerged as important players in human cancer and are validated targets in drug discovery for cancer therapy: 1) the NF-kappaB and AP-1 families of transcription factors, 2) the STAT family members and 3) the steroids receptors. This review aims to elucidate the divergent molecular mechanisms involved in the deregulated activation of transcription factor signaling in malignant transformation, although additional transcription factor families such as the Ets factors, ATF family members, basic helix-loop-helix transcription factors etc. are additional critical transcriptional regulators in human cancer. We explore new approaches to specifically inhibit these transcription factors in cancer in order to validate them as a drug targets. Efforts to develop novel viral vectors for therapeutic applications are also discussed.
Insights
Transcription factors are crucial in cancer development. Targeting deregulated transcription factors offers promising therapeutic strategies for various cancers, including those involving NF-kappaB, STAT, and steroid receptors.
Area of Science:
- Molecular Biology
- Oncology
- Cancer Genetics
Background:
- Transcription factors regulate gene expression and are frequently altered in cancer.
- Aberrant transcription factor activity drives tumor formation, progression, and metastasis.
- Key signaling pathways converge on transcription factors, controlling oncogenic gene expression.
Purpose of the Study:
- To review the molecular mechanisms of deregulated transcription factor signaling in cancer.
- To highlight transcription factor families (NF-kappaB, STAT, steroid receptors) as critical targets.
- To explore novel therapeutic strategies for inhibiting transcription factors in cancer therapy.
Main Methods:
- Literature review of molecular mechanisms in cancer.
- Analysis of transcription factor families implicated in tumorigenesis.
- Discussion of emerging therapeutic approaches and drug targets.
Main Results:
- Transcription factors play pivotal roles in oncogenesis through deregulated expression and activity.
- Specific families like NF-kappaB, STAT, and steroid receptors are validated therapeutic targets.
- Post-translational modifications and signaling pathways modulate transcription factor activity in cancer.
Conclusions:
- Targeting transcription factors presents a logical therapeutic strategy for cancer intervention.
- Developing novel inhibitors and therapeutic vectors is crucial for effective cancer treatment.
- Further research into transcription factor families like Ets and ATF is warranted.
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