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Gene therapeutic approach to primary and metastatic brain tumors: I. CD44 variant pre-RNA alternative splicing as a
Abstract:
Our laboratory and others have shown alternative splicing of up to ten exons at a discrete extracellular site to be primarily responsible for the generation of CD44 variant (CD44v) isoforms. Based on clear differences in the expression of these CD44v isoforms between normal and malignant tissues, we believe that elucidation of the mechanisms underlying the regulation of CD44 alternative splicing may provide a new gene therapeutic targeting approach based on CD44 pre-mRNA processing in vivo. This strategy incorporates utilization of CD44 alternative splicing control elements into a chimeric enzyme/prodrug therapy (CEPT), a novel modification of the virus-directed enzyme/prodrug therapy (VDEPT) approach for the treatment of brain metastases from tumors of systemic origin. As initial steps towards the development of a gene therapeutic approach based on targeting tumor cell expression of specific CD44v alternatively spliced isoforms, we have: (1) developed a novel in vivo assay system that allows the rapid analyses of potentially therapeutic CD44 alternative splicing minigene constructs; and (2) cloned the E. coli cytosine deaminase (CD) gene and fused its enzymatically active domain to alternatively spliced CD44 exons (CD44/CD). Deamination of cytosine by this CD44/CD chimeric fusion protein is demonstrated in E. coli cell lysates to be equal to that of wild type cytosine deaminase.
Insights
Researchers developed a novel gene therapy targeting CD44 variant isoforms in cancer. This approach uses a chimeric enzyme/prodrug therapy (CEPT) to modify CD44 pre-mRNA processing for treating brain metastases.
Area of Science:
- Molecular Biology
- Cancer Genetics
- Gene Therapy
Background:
- CD44 variant (CD44v) isoforms are generated by alternative splicing of CD44 exons.
- Differential expression of CD44v isoforms in normal versus malignant tissues suggests therapeutic potential.
- Targeting CD44 alternative splicing offers a novel gene therapeutic strategy.
Purpose of the Study:
- To develop a gene therapeutic approach targeting tumor-specific CD44v isoforms.
- To investigate CD44 pre-mRNA processing for in vivo gene therapy.
- To create a novel chimeric enzyme/prodrug therapy (CEPT) for brain metastases.
Main Methods:
- Developed a novel in vivo assay for analyzing CD44 alternative splicing minigene constructs.
- Cloned the E. coli cytosine deaminase (CD) gene.
- Created a CD44/CD chimeric fusion protein by linking the CD gene's active domain to alternatively spliced CD44 exons.
Main Results:
- The in vivo assay system allows rapid analysis of CD44 splicing constructs.
- The CD44/CD chimeric fusion protein was successfully constructed.
- The chimeric CD44/CD protein exhibited enzymatic activity comparable to wild-type cytosine deaminase in E. coli lysates.
Conclusions:
- Elucidating CD44 alternative splicing mechanisms can lead to new gene therapies.
- The developed CD44/CD fusion protein is a promising component for CEPT.
- This strategy holds potential for treating brain metastases by targeting CD44v isoforms.
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