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An In Vitro Protocol for Evaluating MicroRNA Levels, Functions, and Associated Target Genes in Tumor Cells
Published on: May 21, 2019
Viral Encoded miRNAs in Tumorigenesis: Theranostic Opportunities in Precision Oncology
Rodney Hull1, Rahaba Marima1, Mohammed Alaouna1,2
1SAMRC Precision Oncology Research Unit (PORU), DSI/NRF SARChI Chair in Precision Oncology and Cancer Prevention (POCP), Pan African Cancer Research Institute (PACRI), University of Pretoria, Hatfield 0028, South Africa.
Abstract:
About 15% of all human cancers have a viral etiology. Although progress has been made, understanding the viral oncogenesis and associated molecular mechanisms remain complex. The discovery of cellular miRNAs has led to major breakthroughs. Interestingly, viruses have also been discovered to encode their own miRNAs. These viral, small, non-coding miRNAs are also known as viral-miRNAs (v-miRNAs). Although the function of v-miRNAs largely remains to be elucidated, their role in tumorigenesis cannot be ignored. V-miRNAs have also been shown to exploit the cellular machinery to benefit viral replication and survival. Although the discovery of Hepatitis C virus (HCV), and its viral miRNAs, is a work in progress, the existence of HPV-, EBV-, HBV-, MCPyV- and KSHV-encoded miRNA has been documented. V-miRNAs have been shown to target host factors to advance tumorigenesis, evade and suppress the immune system, and deregulate both the cell cycle and the apoptotic machinery. Although the exact mechanisms of v-miRNAs-induced tumorigenesis are still unclear, v-miRNAs are active role-players in tumorigenesis, viral latency and cell transformation. Furthermore, v-miRNAs can function as posttranscriptional gene regulators of both viral and host genes. Thus, it has been proposed that v-miRNAs may serve as diagnostic biomarkers and therapeutic targets for cancers with a viral etiology. Although significant challenges exist in their clinical application, emerging reports demonstrate their potent role in precision medicine. This review will focus on the roles of HPV-, HCV-, EBV-, HBV-, MCPyV-, and KSHV-produced v-miRNAs in tumorigenesis, as effectors in immune evasion, as diagnostic biomarkers and as novel anti-cancer therapeutic targets. Finally, it will discuss the challenges and opportunities associated with v-miRNAs theranostics in precision oncology.
Insights
Viral miRNAs (v-miRNAs) play a key role in cancers with viral causes. These small molecules are involved in tumor development, immune evasion, and can be diagnostic biomarkers and therapeutic targets.
Area of Science:
- Oncology
- Virology
- Molecular Biology
Background:
- Approximately 15% of human cancers are linked to viral infections.
- Understanding viral oncogenesis and molecular mechanisms is complex.
- Cellular microRNAs (miRNAs) have advanced cancer research, and viruses also encode their own miRNAs, known as viral-miRNAs (v-miRNAs).
Purpose of the Study:
- To review the roles of v-miRNAs from specific viruses (HPV, HCV, EBV, HBV, MCPyV, KSHV) in tumorigenesis.
- To explore v-miRNAs as effectors in immune evasion.
- To discuss v-miRNAs as diagnostic biomarkers and therapeutic targets in viral-associated cancers.
Main Methods:
- Literature review focusing on v-miRNAs encoded by human oncogenic viruses.
- Analysis of studies investigating v-miRNA functions in viral oncogenesis, immune response, and cell cycle regulation.
- Examination of research on v-miRNAs as diagnostic markers and therapeutic strategies.
Main Results:
- v-miRNAs are implicated in targeting host factors to promote tumorigenesis, evade immune surveillance, and deregulate cell cycle and apoptosis.
- v-miRNAs contribute to viral latency and cell transformation.
- v-miRNAs can regulate both viral and host genes at the post-transcriptional level.
Conclusions:
- v-miRNAs are significant players in viral-associated tumorigenesis and can modulate host responses.
- v-miRNAs show promise as diagnostic biomarkers and therapeutic targets for precision oncology.
- Challenges remain in the clinical application of v-miRNAs, but their potential in theranostics is substantial.
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