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MicroRNAs Regulate Tumorigenesis by Downregulating SOCS3 Expression: An In silico Approach
Sura Al-Asadi1, Hiba Mansour1, Ahmed Jwaid Ataimish2
1College of Health and Medical Techniques, Middle Technical University, Baghdad, Iraq.
Abstract:
Tumor microenvironment is characterized by the occurrence of significant changes due to disrupted signaling pathways that affect a broad spectrum of cellular activities such as proliferation, differentiation, signaling, invasiveness, migration, and apoptosis. Similarly, a downregulated suppressor of cytokine signaling 3 (SOCS3) promotes increased JAK/STAT function due to aberrant cytokine signaling, which results in increased cell proliferation, differentiation, and migration. Multiple carcinomas including breast cancer, prostate cancer, hepatocellular carcinoma, pancreatic cancer, and colorectal cancer involve the disruption of SOCS3 expression due to microRNA overexpression. MicroRNAs are small, conserved, and non-coding RNA molecules that regulate gene expression through post-transcriptional inhibition and mRNA destabilization. The aim of this study was to identify putative microRNAs that interact with SOCS3 and downregulate its expression. In this study, miRWalk, TargetScan, and miRDB were used to identify microRNAs that interact with SOCS3, whereas RNA22 was utilized to identify the binding sites of 238 significant microRNAs. The tertiary structures of shortlisted microRNAs and SOCS3 regions were predicted through MC Sym and RNAComposer, respectively. For molecular docking, HDOCK was used, which predicted 80 microRNA-messengerRNA complexes and the interactions of the top 5 shortlisted complexes were assessed. The complexes were shortlisted on the basis of least binding affinity score and maximum confidence score. This study identifies the interactions of known (miR-203a-5p) and novel (miR-6756-5p, miR-6732-5p, miR-1203, miR-6887-5p) microRNAs with SOCS3 regions due to their maximum interactions. Identifying the interactions of these microRNAs with SOCS3 will significantly advance the understanding of oncomiRs (miRNAs that are associated with cancer development) in tumor development due to their influence on SOCS3 expression. These insights will assist in future studies to understand the significance of miRNA-SOCS3-associated tumor development and progression.
Insights
This study identifies novel microRNAs (miRNAs) that interact with suppressor of cytokine signaling 3 (SOCS3), a key regulator in cancer. Understanding these miRNA-SOCS3 interactions advances knowledge of oncomiRs in tumor development.
Area of Science:
- Molecular Biology
- Oncology
- Bioinformatics
Background:
- Tumor microenvironments exhibit altered signaling pathways impacting cell activities.
- Downregulated suppressor of cytokine signaling 3 (SOCS3) enhances JAK/STAT signaling, promoting cancer cell proliferation and migration.
- MicroRNA (miRNA) overexpression disrupts SOCS3 expression in various carcinomas, including breast, prostate, and colorectal cancers.
Purpose of the Study:
- To identify specific microRNAs that interact with SOCS3 and downregulate its expression.
- To elucidate the role of miRNA-SOCS3 interactions in the context of cancer development.
- To provide insights into potential oncomiRs involved in tumor progression.
Main Methods:
- Utilized miRWalk, TargetScan, and miRDB to predict miRNA-SOCS3 interactions.
- Employed RNA22 to identify miRNA binding sites.
- Predicted tertiary structures using MC Sym and RNAComposer.
- Performed molecular docking with HDOCK to assess miRNA-messengerRNA complexes.
Main Results:
- Identified interactions between known (miR-203a-5p) and novel (miR-6756-5p, miR-6732-5p, miR-1203, miR-6887-5p) microRNAs with SOCS3.
- Assessed 80 microRNA-messengerRNA complexes, prioritizing those with least binding affinity and maximum confidence.
- Confirmed significant interactions of specific miRNAs with SOCS3 regions.
Conclusions:
- This research identifies key microRNAs that interact with SOCS3, influencing its expression.
- These findings enhance the understanding of oncomiRs and their role in tumor development.
- The study lays the groundwork for future investigations into miRNA-SOCS3 associations in cancer progression.
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