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Detection of a Circulating MicroRNA Custom Panel in Patients with Metastatic Colorectal Cancer
Published on: March 14, 2019
Functional Prediction of Candidate MicroRNAs for CRC Management Using in Silico Approach
Adewale Oluwaseun Fadaka1, Ashley Pretorius2, Ashwil Klein3
1Department of Biotechnology, Faculty of Natural Sciences, University of the Western Cape, Private Bag X17, Bellville, Cape Town 7535, South Africa. afadaka@uwc.ac.za.
Abstract:
Approximately 30-50% of malignant growths can be prevented by avoiding risk factors and implementing evidence-based strategies. Colorectal cancer (CRC) accounted for the second most common cancer and the third most common cause of cancer death worldwide. This cancer subtype can be reduced by early detection and patients' management. In this study, the functional roles of the identified microRNAs were determined using an in silico pipeline. Five microRNAs identified using an in silico approach alongside their seven target genes from our previous study were used as datasets in this study. Furthermore, the secondary structure and the thermodynamic energies of the microRNAs were revealed by Mfold algorithm. The triplex binding ability of the oligonucleotide with the target promoters were analyzed by Trident. Finally, evolutionary stage-specific somatic events and co-expression analysis of the target genes in CRC were analyzed by SEECancer and GeneMANIA plugin in Cytoscape. Four of the five microRNAs have the potential to form more than one secondary structure. The ranges of the observed/expected ratio of CpG dinucleotides of these genes range from 0.60 to 1.22. Three of the candidate microRNA were capable of forming multiple triplexes along with three of the target mRNAs. Four of the total targets were involved in either early or metastatic stage-specific events while three other genes were either a product of antecedent or subsequent events of the four genes implicated in CRC. The secondary structure of the candidate microRNAs can be used to explain the different degrees of genetic regulation in CRC due to their conformational role to modulate target interaction. Furthermore, due to the regulation of important genes in the CRC pathway and the enrichment of the microRNA with triplex binding sites, they may be a useful diagnostic biomarker for the disease subtype.
Insights
This study identifies five microRNAs and their target genes for colorectal cancer (CRC) detection. Their structural properties and interactions suggest potential as diagnostic biomarkers for this common malignancy.
Area of Science:
- Bioinformatics
- Molecular Biology
- Oncology
Background:
- Colorectal cancer (CRC) is a leading cause of cancer death globally, necessitating improved early detection and management strategies.
- Approximately 30-50% of cancers, including CRC, are preventable through risk factor avoidance and evidence-based interventions.
Purpose of the Study:
- To investigate the functional roles and potential diagnostic utility of specific microRNAs and their target genes in colorectal cancer.
- To analyze the structural and interaction properties of candidate microRNAs and their association with CRC pathogenesis.
Main Methods:
- Utilized an in silico pipeline to identify five microRNAs and seven target genes relevant to colorectal cancer.
- Employed Mfold and Trident algorithms to analyze microRNA secondary structures and triplex binding abilities with target promoters.
- Applied SEECancer and GeneMANIA (Cytoscape) for analyzing evolutionary somatic events and gene co-expression in CRC.
Main Results:
- Four of five candidate microRNAs exhibited the capacity to form multiple secondary structures.
- Three microRNAs demonstrated potential for multiple triplex formations with three target messenger RNAs.
- Four target genes were implicated in early or metastatic CRC stages, with others linked to antecedent or subsequent events.
Conclusions:
- The secondary structures of candidate microRNAs may explain varying genetic regulation degrees in CRC by modulating target interactions.
- Enrichment of microRNAs with triplex binding sites and their regulation of key CRC pathway genes suggest potential as diagnostic biomarkers.
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