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Engineering Artificial Factors to Specifically Manipulate Alternative Splicing in Human Cells
Published on: April 26, 2017
Alternative RNA Splicing-The Trojan Horse of Cancer Cells in Chemotherapy
Nikolay Mehterov1,2, Maria Kazakova1,2, Yordan Sbirkov1,2
1Department of Medical Biology, Medical University-Plovdiv, 4002 Plovdiv, Bulgaria.
Abstract:
Almost all transcribed human genes undergo alternative RNA splicing, which increases the diversity of the coding and non-coding cellular landscape. The resultant gene products might have distinctly different and, in some cases, even opposite functions. Therefore, the abnormal regulation of alternative splicing plays a crucial role in malignant transformation, development, and progression, a fact supported by the distinct splicing profiles identified in both healthy and tumor cells. Drug resistance, resulting in treatment failure, still remains a major challenge for current cancer therapy. Furthermore, tumor cells often take advantage of aberrant RNA splicing to overcome the toxicity of the administered chemotherapeutic agents. Thus, deciphering the alternative RNA splicing variants in tumor cells would provide opportunities for designing novel therapeutics combating cancer more efficiently. In the present review, we provide a comprehensive outline of the recent findings in alternative splicing in the most common neoplasms, including lung, breast, prostate, head and neck, glioma, colon, and blood malignancies. Molecular mechanisms developed by cancer cells to promote oncogenesis as well as to evade anticancer drug treatment and the subsequent chemotherapy failure are also discussed. Taken together, these findings offer novel opportunities for future studies and the development of targeted therapy for cancer-specific splicing variants.
Insights
Alternative RNA splicing diversifies gene products, and its dysregulation drives cancer. Understanding cancer-specific splicing variants offers new therapeutic strategies against drug resistance and chemotherapy failure.
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- Alternative RNA splicing generates diverse gene products with varied functions.
- Aberrant splicing is implicated in cancer development, progression, and drug resistance.
- Cancer cells exploit alternative splicing to evade chemotherapy.
Purpose of the Study:
- To review recent findings on alternative splicing in common cancers.
- To discuss molecular mechanisms of oncogenesis and drug resistance via splicing.
- To highlight opportunities for targeted therapies based on splicing variants.
Main Methods:
- Comprehensive literature review of alternative splicing in neoplasms.
- Analysis of molecular mechanisms in cancer cell splicing.
- Synthesis of current knowledge on splicing and cancer therapy.
Main Results:
- Distinct splicing profiles differentiate healthy and tumor cells.
- Alternative splicing contributes to cancer's malignant transformation and progression.
- Aberrant splicing aids tumor cells in resisting chemotherapy.
Conclusions:
- Targeting cancer-specific splicing variants presents novel therapeutic avenues.
- Understanding alternative splicing is crucial for developing effective cancer treatments.
- Future research can leverage splicing insights for targeted cancer therapies.
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