Literature DB >> 25738604

Analysis of miRNAs Targeting 3'UTR of H2AFX Gene: a General in Silico Approach.

Saverio Sabina, Cecilia Vecoli1, Andrea Borghini, Roberto Guarino, Maria G Andreassi.   

Abstract

MiRNAs are gene (post-transcriptional) regulators that bind the 3'UTR of target genes. Single-nucleotide polymorphisms (SNPs) located within a miRNA binding site can impact miRNAdependent gene regulation by weakening or reinforcing the microRNA:mRNA bond. We present a general in silico approach enabling researchers to "predict" which of the several SNPs of 3'UTR of H2AFX gene can mainly affect its regulation. H2AFX gene encodes a member of the H2A histone family which is central in the detection of and response to DNA double-strand breaks. All the 17 common SNPs located within the 3'UTR of H2AFX gene were analyzed for putative miRNA-binding sites by using different databases (such as dbSNP and miRBase) and pre-existing algorithms (such as MicroSNiPer and RNAcofold) in order to calculate the minimum free energies of hybridization of the microRNA:mRNA duplex, for both the wild-type and mutant alleles. The difference in these energies was also calculated. Since in each tissue one target sequence can bind only one miRNA at a time, the sum of all the difference of energies can be considered a relevant parameter for predicting the importance of a SNP with respect to miRNA regulation. We used tertiles to classify the SNPs and provide a priority list based on their theoretically strongest impact on miRNA binding. By using the described approach, we provided the basis for a reasoned, user-friendly algorithm-driven selection of SNPs impacting miRNA biology. The proposed method is helpful for selecting SNPs having a more powerful (putative) biological function, minimizing workflow and costs for experimental and clinical investigations.

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Year:  2015        PMID: 25738604     DOI: 10.2174/2211536604666150227232003

Source DB:  PubMed          Journal:  Microrna


  3 in total

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2.  Role of the DNA repair genes H2AX and HMGB1 in human fat distribution and lipid profiles.

Authors:  Kerstin Rohde; Torunn Rønningen; Lars la Cour Poulsen; Maria Keller; Matthias Blüher; Yvonne Böttcher
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3.  Evaluating the Effect of 3'-UTR Variants in DICER1 and DROSHA on Their Tissue-Specific Expression by miRNA Target Prediction.

Authors:  Dmitrii S Bug; Artem V Tishkov; Ivan S Moiseev; Natalia V Petukhova
Journal:  Curr Issues Mol Biol       Date:  2021-07-06       Impact factor: 2.976

  3 in total

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