利用生物信息学方法研究针对所有四种登革热病毒血清型3′utr的血清和造血细胞特异性治疗性microrna。

IF 2.7 4区 医学 Q3 IMMUNOLOGY
Mirza Sarwar Baig, Anuja Krishnan
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引用次数: 3

摘要

所有四种登革热病毒(DENV)血清型的高地方性流行是一个严重的全球公共卫生问题,因此任何疫苗或治疗方法都应能够针对所有四种病毒。造血细胞被认为是DENV复制的主要位点。本研究旨在鉴定针对所有四种DENV血清型3' UTR的潜在宿主mirna,从而直接调节病毒基因表达或间接调节不同病毒感染步骤的宿主系统。我们使用miRanda、RNA22、RNAhybrid和StarMir四种预测算法预测miRNA,针对所有四种DENV血清型的3'UTR。统计上,根据基因本体(GO)术语和京都基因与基因组百科全书(KEGG)途径富集分析的Log10 p值(> 0.0001)筛选最显著的miRNA靶点。至少三种预测工具的交叉测试共鉴定出30个mirna,这些mirna可以结合所有四种DENV血清型的3'UTR。在这30个mirna中,有8个来自造血细胞。GO项富集和KEGG分析显示4个造血源性mirna靶基因主要参与先天免疫应答、mRNA 3′端加工、抗原加工和递呈以及核转录mRNA分解代谢过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A bioinformatics approach to investigate serum and hematopoietic cell-specific therapeutic microRNAs targeting the 3' UTRs of all four Dengue virus serotypes.

Hyperendemic circulation of all four Dengue virus (DENV) serotypes is a severe global public health problem, so any vaccine or therapeutics should be able to target all four of them. Cells of hemopoietic origin are believed to be primary sites of DENV replication. This study aimed to identify potential host miRNAs that target 3' UTR of all four DENV serotypes, thereby directly regulating viral gene expression or indirectly modulating the host system at different virus infection steps. We used four prediction algorithms viz. miRanda, RNA22, RNAhybrid and StarMir for predicting miRNA, targeting 3'UTR of all four DENV serotypes. Statistically, the most significant miRNA targets were screened based on their Log10 P-value (> 0.0001) of Gene Ontology (GO) term and Kyoto Encyclopaedia of Gene and Genome (KEGG) pathway enrichment analysis. The intersection test of at least three prediction tools identified a total of 30 miRNAs, which could bind to 3'UTR of all four DENV serotypes. Of the 30, eight miRNAs were of hematopoietic cell origin. GO term enrichment and KEGG analysis showed four hemopoietic origin miRNAs target genes of the biological processes mainly involved in the innate immune response, mRNA 3'-end processing, antigen processing and presentation and nuclear-transcribed mRNA catabolic process.

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来源期刊
Pathogens and disease
Pathogens and disease IMMUNOLOGY-INFECTIOUS DISEASES
CiteScore
7.40
自引率
3.00%
发文量
44
期刊介绍: Pathogens and Disease publishes outstanding primary research on hypothesis- and discovery-driven studies on pathogens, host-pathogen interactions, host response to infection and their molecular and cellular correlates. It covers all pathogens – eukaryotes, prokaryotes, and viruses – and includes zoonotic pathogens and experimental translational applications.
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