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Updated: May 15, 2026

CRISPR Gene Editing Tool for MicroRNA Cluster Network Analysis
Published on: April 25, 2022
Post-transcriptional processing of genetic information and its relation to cancer
Lr McNally1, U Manne, W E Grizzle
1James Graham Brown Cancer Center , University of Louisville, Louisville , Kentucky.
Abstract:
During the development, progression and dissemination of neoplastic lesions, cancer cells hijack normal pathways and mechanisms, especially those involved in repair and embryologic development. These pathways include those involved in intercellular communication, control of transcription, post-transcriptional regulation of protein production including translation of mRNAs, post-translational protein modifications, e.g., acetylation of proteins, and protein degradation. Small, non-translatable RNAs, especially microRNAs (miRs), are Important components of post-transcriptional control. MiRs are produced from areas of the genome that are not translated into proteins, but may be co-regulated with their associated genes. MiRs bind to the 3' untranslated regions of mRNAs and regulate the expression of genes in most cases by either promoting the degradation of mRNA and/or inhibiting the translation of mRNAs into proteins; thus, miRs usually cause a decrease in protein levels that would be expected if the mRNAs were translated normally. It is early in our understanding of how miRs affect neoplastic processes, but miRs are expressed differentially in most cancers and have been associated with tumor progression, chemoresistance and metastasis. MiRs are present in nanovesicles, such as exosomes, and thus are likely involved in intercellular communication, especially in neoplasia. MiRs are attractive targets for novel therapies of cancer as well as potential biomarkers that might be useful for early detection and diagnosis, and for prediction of therapeutic efficacy. MiRs also could aid and in determining prognosis, evaluating novel therapies, and developing preventive strategies by their use as surrogate end points.
Insights
MicroRNAs (miRs) are small RNAs regulating gene expression and are implicated in cancer development and metastasis. These miRs, found in nanovesicles, show promise as cancer biomarkers and therapeutic targets.
Area of Science:
- Molecular Biology
- Oncology
- Genetics
Background:
- Cancer cells manipulate normal cellular pathways for growth and spread.
- Small, non-translatable RNAs, particularly microRNAs (miRs), are key regulators of gene expression at the post-transcriptional level.
- MiRs function by binding to messenger RNAs (mRNAs), typically leading to decreased protein production.
Purpose of the Study:
- To explore the role of microRNAs (miRs) in cancer development, progression, and intercellular communication.
- To highlight the potential of miRs as diagnostic biomarkers and therapeutic targets in oncology.
- To discuss the involvement of miRs in tumor progression, chemoresistance, and metastasis.
Main Methods:
- Review of current literature on microRNA function in neoplastic processes.
- Analysis of miR expression patterns in various cancers.
- Investigation of miRs within nanovesicles (e.g., exosomes) for intercellular signaling.
Main Results:
- MiRs are differentially expressed in most cancers and are linked to tumor progression, chemoresistance, and metastasis.
- MiRs are found in exosomes, suggesting a role in cancer cell communication.
- MiRs represent potential biomarkers for early detection, diagnosis, and predicting therapeutic response.
Conclusions:
- MicroRNAs play a significant role in cancer biology, influencing tumor development and spread.
- MiRs hold considerable potential as biomarkers for cancer diagnosis, prognosis, and therapeutic guidance.
- Targeting miRs offers a promising avenue for novel cancer therapies and preventive strategies.
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