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Emerging role and function of miR-198 in human health and diseases
Pankhuri Kaushik1, Arun Kumar1
1Department of Molecular Reproduction, Development and Genetics, Indian Institute of Science, Bangalore 560012, India.
Abstract:
Ever since their discovery, microRNAs (miRNAs/miRs) have astonished us by the plethora of processes they regulate, and thus adding another dimension to the gene regulation. They have been implicated in several diseases affecting cardiovascular, neurodegenerative, hepatic, autoimmune and inflammatory functions. A primate specific exonic miRNA, miR-198 has been vastly studied during the past decade, and shown to have a critical role in wound healing. The aberrant expression of miR-198 was first reported in schizophrenia, linking it to neural development. Later, its dysregulation and tumor suppressive role was reported in hepatocellular carcinoma. However, this was just a beginning, and after which there was an explosion of reports linking miR-198 deregulation to cancers and other ailments. The first target to be identified for miR-198 was Cyclin T1 in monocytes affecting HIV1 replication. Depending on the type of cancer, miR-198 has been shown to function either as a tumor suppressor or an oncomir. Interestingly, miR-198 is not only known to regulate multiple targets and pathways, but also is itself regulated by several circular RNAs and long-non-coding RNAs, highlighting a complex regulatory network. This review highlights the currently understood mechanism and regulation of miR-198 in different diseases, and its possible diagnostic and therapeutic potential.
Insights
MicroRNA-198 (miR-198) plays a key role in gene regulation and disease. This review explores miR-198's complex roles in various conditions and its potential for diagnostics and therapeutics.
Area of Science:
- Molecular Biology
- Genetics
- Biochemistry
Background:
- MicroRNAs (miRNAs) are crucial regulators of gene expression implicated in numerous diseases.
- miR-198, a primate-specific miRNA, is vital for wound healing and neural development.
- Dysregulation of miR-198 is linked to schizophrenia, hepatocellular carcinoma, and other cancers.
Purpose of the Study:
- To review the current understanding of miR-198's mechanisms and regulation in disease.
- To highlight the diagnostic and therapeutic potential of miR-198.
Main Methods:
- Literature review of studies on miR-198 function, targets, and regulation.
- Analysis of miR-198's role in various disease models and human conditions.
- Examination of regulatory networks involving circular RNAs and long-non-coding RNAs.
Main Results:
- miR-198 targets include Cyclin T1, affecting HIV1 replication.
- miR-198 exhibits context-dependent roles as a tumor suppressor or oncomir in different cancers.
- Complex regulatory networks involving non-coding RNAs modulate miR-198 expression.
Conclusions:
- miR-198 is a significant regulator involved in diverse biological processes and diseases.
- Understanding miR-198's intricate regulatory network is key to its therapeutic applications.
- miR-198 holds promise as a biomarker and therapeutic target for various diseases.
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