Role of MDA-7/IL-24 a Multifunction Protein in Human Diseases
Mitchell E Menezes1, Praveen Bhoopathi1, Anjan K Pradhan1
1Virginia Commonwealth University, School of Medicine, Richmond, VA, United States.
Abstract:
Subtraction hybridization identified genes displaying differential expression as metastatic human melanoma cells terminally differentiated and lost tumorigenic properties by treatment with recombinant fibroblast interferon and mezerein. This approach permitted cloning of multiple genes displaying enhanced expression when melanoma cells terminally differentiated, called melanoma differentiation associated (mda) genes. One mda gene, mda-7, has risen to the top of the list based on its relevance to cancer and now inflammation and other pathological states, which based on presence of a secretory sequence, chromosomal location, and an IL-10 signature motif has been named interleukin-24 (MDA-7/IL-24). Discovered in the early 1990s, MDA-7/IL-24 has proven to be a potent, near ubiquitous cancer suppressor gene capable of inducing cancer cell death through apoptosis and toxic autophagy in cancer cells in vitro and in preclinical animal models in vivo. In addition, MDA-7/IL-24 embodied profound anticancer activity in a Phase I/II clinical trial following direct injection with an adenovirus (Ad.mda-7; INGN-241) in tumors in patients with advanced cancers. In multiple independent studies, MDA-7/IL-24 has been implicated in many pathological states involving inflammation and may play a role in inflammatory bowel disease, psoriasis, cardiovascular disease, rheumatoid arthritis, tuberculosis, and viral infection. This review provides an up-to-date review on the multifunctional gene mda-7/IL-24, which may hold potential for the therapy of not only cancer, but also other pathological states.
Insights
The melanoma differentiation associated gene (mda)-7, now known as interleukin-24 (MDA-7/IL-24), acts as a potent cancer suppressor. This gene demonstrates potential for treating various cancers and inflammatory diseases.
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- Subtraction hybridization identified differentially expressed genes in terminally differentiated melanoma cells.
- Melanoma differentiation associated (mda) genes were cloned, with mda-7 showing significant relevance.
Purpose of the Study:
- To review the multifunctional gene mda-7/IL-24.
- To highlight its potential in cancer therapy and other pathological states.
Main Methods:
- Subtraction hybridization for gene identification.
- Analysis of gene expression in differentiated melanoma cells.
- Review of preclinical and clinical studies on MDA-7/IL-24.
Main Results:
- MDA-7/IL-24 (interleukin-24) identified as a potent cancer suppressor gene.
- Demonstrated induction of apoptosis and autophagy in cancer cells.
- Showed anticancer activity in a Phase I/II clinical trial (Ad.mda-7; INGN-241).
Conclusions:
- MDA-7/IL-24 exhibits broad anticancer properties.
- It plays a role in various inflammatory and pathological conditions.
- Potential therapeutic applications for cancer and other diseases.
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