Clustering Pattern and Functional Effect of SNPs in Human miRNA Seed Regions

miRNAs are a class of noncoding RNAs important in posttranscriptional repressors and involved in the regulation of almost every biological process by base paring with target genes through sequence in their seed regions. Genetic variations in the seed regions have vital effects on gene expression, ph...

Full description

Bibliographic Details
Main Authors: Sha He, Haiyan Ou, Cunyou Zhao, Jian Zhang
Format: Article
Language:English
Published: Hindawi Limited 2018-01-01
Series:International Journal of Genomics
Online Access:http://dx.doi.org/10.1155/2018/2456076
id doaj-df3b7cb28dd3431ca1e8f582677d1b0f
record_format Article
spelling doaj-df3b7cb28dd3431ca1e8f582677d1b0f2020-11-24T22:42:35ZengHindawi LimitedInternational Journal of Genomics2314-436X2314-43782018-01-01201810.1155/2018/24560762456076Clustering Pattern and Functional Effect of SNPs in Human miRNA Seed RegionsSha He0Haiyan Ou1Cunyou Zhao2Jian Zhang3Bioinformatics Section, School of Basic Medical Sciences, Southern Medical University, Guangzhou, Guangdong 510515, ChinaDepartment of Medical Genetics, School of Basic Medical Sciences, Southern Medical University, Guangzhou, Guangdong 510515, ChinaDepartment of Medical Genetics, School of Basic Medical Sciences, Southern Medical University, Guangzhou, Guangdong 510515, ChinaDepartment of Medical Genetics, School of Basic Medical Sciences, Southern Medical University, Guangzhou, Guangdong 510515, ChinamiRNAs are a class of noncoding RNAs important in posttranscriptional repressors and involved in the regulation of almost every biological process by base paring with target genes through sequence in their seed regions. Genetic variations in the seed regions have vital effects on gene expression, phenotypic variation, and disease susceptibility in humans. The distribution pattern of genetic variation in miRNA seed regions might be related to miRNA function and is worth paying more attention to. We here employed computational analyses to explore the clustering pattern and functional effect of SNPs in human miRNA seed regions. A total of 1879 SNPs were mapped to 1226 human miRNA seed regions. We found that miRNAs with SNPs in their seed region are significantly enriched in miRNA clusters. We also found that SNPs in clustered miRNA seed regions have a lower functional effect than have SNPs in nonclustered miRNA seed regions. Additionally, we found that clustered miRNAs with SNPs in seed regions are involved in more pathways. Overall, our results demonstrate that SNPs in clustered miRNA seed regions can take part in more intricate and complex gene-regulating networks with lower functional cost by functional complementarity. Moreover, our results also broaden current knowledge on the genetic variation in human miRNA seed regions.http://dx.doi.org/10.1155/2018/2456076
collection DOAJ
language English
format Article
sources DOAJ
author Sha He
Haiyan Ou
Cunyou Zhao
Jian Zhang
spellingShingle Sha He
Haiyan Ou
Cunyou Zhao
Jian Zhang
Clustering Pattern and Functional Effect of SNPs in Human miRNA Seed Regions
International Journal of Genomics
author_facet Sha He
Haiyan Ou
Cunyou Zhao
Jian Zhang
author_sort Sha He
title Clustering Pattern and Functional Effect of SNPs in Human miRNA Seed Regions
title_short Clustering Pattern and Functional Effect of SNPs in Human miRNA Seed Regions
title_full Clustering Pattern and Functional Effect of SNPs in Human miRNA Seed Regions
title_fullStr Clustering Pattern and Functional Effect of SNPs in Human miRNA Seed Regions
title_full_unstemmed Clustering Pattern and Functional Effect of SNPs in Human miRNA Seed Regions
title_sort clustering pattern and functional effect of snps in human mirna seed regions
publisher Hindawi Limited
series International Journal of Genomics
issn 2314-436X
2314-4378
publishDate 2018-01-01
description miRNAs are a class of noncoding RNAs important in posttranscriptional repressors and involved in the regulation of almost every biological process by base paring with target genes through sequence in their seed regions. Genetic variations in the seed regions have vital effects on gene expression, phenotypic variation, and disease susceptibility in humans. The distribution pattern of genetic variation in miRNA seed regions might be related to miRNA function and is worth paying more attention to. We here employed computational analyses to explore the clustering pattern and functional effect of SNPs in human miRNA seed regions. A total of 1879 SNPs were mapped to 1226 human miRNA seed regions. We found that miRNAs with SNPs in their seed region are significantly enriched in miRNA clusters. We also found that SNPs in clustered miRNA seed regions have a lower functional effect than have SNPs in nonclustered miRNA seed regions. Additionally, we found that clustered miRNAs with SNPs in seed regions are involved in more pathways. Overall, our results demonstrate that SNPs in clustered miRNA seed regions can take part in more intricate and complex gene-regulating networks with lower functional cost by functional complementarity. Moreover, our results also broaden current knowledge on the genetic variation in human miRNA seed regions.
url http://dx.doi.org/10.1155/2018/2456076
work_keys_str_mv AT shahe clusteringpatternandfunctionaleffectofsnpsinhumanmirnaseedregions
AT haiyanou clusteringpatternandfunctionaleffectofsnpsinhumanmirnaseedregions
AT cunyouzhao clusteringpatternandfunctionaleffectofsnpsinhumanmirnaseedregions
AT jianzhang clusteringpatternandfunctionaleffectofsnpsinhumanmirnaseedregions
_version_ 1725699323811856384