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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Targeting gene expression to tumor cells with loss of wild-type p53 function
1Department of Medical Oncology, University of Glasgow, United Kingdom. gpma66@udcf.gla.ac.uk
Abstract:
The tumor suppressor protein p53 is a transcription factor that can positively regulate the expression of critical target genes involved in negative control of cell growth or induction of apoptosis; p53 is also able to suppress the transcription of other genes by virtue of its ability to bind components of the basal transcription machinery. Over 50% of human tumors are characterized by p53 mutations that result in a loss of wild-type p53 (wtp53) function in the transcriptional control of these target genes. We have exploited this loss of p53 function in the regulation of gene transcription to develop a novel gene therapy strategy that maximizes expression of the potential therapeutic gene in tumors while simultaneously down-regulating the same gene in normal cells. In one construct (unit I), the potential therapeutic gene (in this case represented by a luciferase reporter) is placed under the control of a promoter such as the heat shock protein 70 gene promoter, which is repressed by wtp53 but overexpressed in many tumor cells with defective p53 function. Residual expression of the reporter in normal cells is repressed by cotransfection of another construct (unit II) consisting of a repressor of unit I under the control of a promoter that is activated by wtp53 expression. Unit II contains a promoter with a consensus wtp53 binding site driving a transcriptional repressor or an antisense construct for the gene in unit I. Our results suggest that this dual control approach may represent a strategy with wide applications in the field of cancer gene therapy.
Insights
This study introduces a novel gene therapy strategy for cancer, exploiting defective p53 protein function in tumors. This approach enhances therapeutic gene expression in cancer cells while reducing it in normal cells.
Area of Science:
- Molecular Biology
- Cancer Genetics
- Gene Therapy
Background:
- The tumor suppressor protein p53 regulates cell growth and apoptosis.
- Mutations in p53 are common in human tumors, leading to loss of function.
- This loss of p53 function affects transcriptional control of target genes.
Purpose of the Study:
- To develop a novel gene therapy strategy that targets tumor cells with defective p53.
- To maximize therapeutic gene expression in tumors while minimizing it in normal tissues.
- To exploit the loss of wild-type p53 (wtp53) function for targeted gene regulation.
Main Methods:
- A dual-control gene construct was designed using two units.
- Unit I: Therapeutic gene under a promoter repressed by wtp53 but overexpressed in p53-deficient tumors.
- Unit II: A repressor construct controlled by a wtp53-activated promoter to down-regulate gene expression in normal cells.
Main Results:
- The strategy allows for selective gene expression in tumor cells.
- Residual gene expression in normal cells is repressed by the dual-control system.
- Demonstrated feasibility using a luciferase reporter gene.
Conclusions:
- The developed dual-control gene therapy approach shows promise for cancer treatment.
- This strategy offers wide applications in cancer gene therapy by exploiting p53 mutations.
- Potential for enhanced therapeutic efficacy and reduced side effects in cancer patients.
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