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Bioinformatics and Biology Insights

Computational Identification of Dengue Virus MicroRNA-Like Structures and their Cellular Targets

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Bioinformatics and Biology Insights 2014:8 169-176

Short Report

Published on 14 Aug 2014

DOI: 10.4137/BBI.S13649


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Abstract

MicroRNAs (miRNAs) are small, noncoding RNA molecules that regulate transcriptional and posttranscriptional gene regulation of the cell. Experimental evidence shows that miRNAs have a direct role in different cellular processes, such as immune function, apoptosis, and tumorigenesis. In a viral infection context, miRNAs have been connected with the interplay between host and pathogen, occupying a major role in pathogenesis. While numerous viral miRNAs from DNA viruses have been identified, characterization of functional RNA virus-encoded miRNAs and their potential targets is still ongoing. Here, we used an in silico approach to analyze dengue Virus genome sequences. Pre-miRNAs were extracted through VMir software, and the identification of putative pre-miRNAs and mature miRNAs was accessed using Support Vector Machine web tools. The targets were scanned using miRanda software and functionally annotated using ClueGo. Via computational tools, eight putative miRNAs were found to hybridize with numerous targets of morphogenesis, differentiation, migration, and growth pathways that may play a major role in the interaction of the virus and its host. Future approaches will focus on experimental validation of their presence and target messenger RNA genes to further elucidate their biological functions in human and mosquito cells.



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Bioinformatics and Biology Insights helps to reach all people with the latest results on research which directly helps them and with their needs. Three of our co-authors are from Burkina Faso, the malaria holoendemic region our research is based on, and serving as motivation for all our efforts for better treatment of malaria.  It is good to be social and it is good to promote science world-wide through open access.
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