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对感染鲑鱼α病毒(SAV)的大西洋鲑鱼中差异表达的微小RNA(miRNA)的鉴定。

Identification of differentially expressed Atlantic salmon miRNAs responding to salmonid alphavirus (SAV) infection.

作者信息

Andreassen Rune, Woldemariam Nardos Tesfaye, Egeland Ine Østråt, Agafonov Oleg, Sindre Hilde, Høyheim Bjørn

机构信息

Department of Pharmacy and Biomedical and Laboratory Sciences, Faculty of Health Sciences, Oslo and Akershus University College of Applied Sciences, Pilestredet 50, N-0130, Oslo, Norway.

Bioinformatics Core Facility, Department of Core Facilities, Institute of Cancer Research, Radium hospital, part of Oslo University Hospital, Oslo, Norway.

出版信息

BMC Genomics. 2017 May 4;18(1):349. doi: 10.1186/s12864-017-3741-3.

Abstract

BACKGROUND

MicroRNAs (miRNAs) control multiple biological processes including the innate immune responses by negative post-transcriptional regulation of gene expression. As there were no studies on the role(s) of miRNAs in viral diseases in Atlantic salmon, we aimed to identify miRNAs responding to salmonid alphavirus (SAV) infection. Their expression were studied at different time points post infection with SAV isolates associated with different mortalities. Furthermore, the genome sequences of the identified miRNAs were analysed to reveal putative cis-regulatory elements, and, finally, their putative target genes were predicted.

RESULTS

Twenty differentially expressed miRNAs (DE miRNAs) were identified. The expression of the majority of these increased post infection with maximum levels reached after the viral load were stabilized or decreasing. On the other hand, some miRNAs (e.g. the miRNA-21 family) showed decreased expression at the early time points post infection. There were significant differences in the temporal expression of individual miRNA associated with different SAV isolates. Target gene prediction in SAV responsive immune network genes showed that seventeen of the DE miRNAs could target 24 genes (e.g. IRF3, IRF7). Applying the Atlantic salmon transcriptome as input 28 more immune network genes were revealed as putative targets (e.g. IRF5, IRF4). The majority of the predicted target genes promote inflammatory response. The upstream sequences of the miRNA genes revealed a high density of cis-regulatory sequences known as binding sites for immune network transcription factors (TFs). A high expression in the late phase could therefore be due to increased transcription promoted by immune response activated TFs. Based on the in silico target predictions, we discuss their putative roles as early promotors or late inhibitors of inflammation. We propose that the differences in expressions associated with different SAV isolates could contribute to their differences in mortality rates.

CONCLUSIONS

This study represents the first steps in exploring miRNAs important in viral-host interaction in Atlantic salmon. We identified several miRNAs responding to SAV infection. Some likely to prohibit harmful inflammation while other may promote an early immune response. Their predicted functions need to be validated and further studied in functional assays to fully understand their roles in immune homeostasis.

摘要

背景

微小RNA(miRNA)通过对基因表达进行转录后负调控来控制包括先天免疫反应在内的多种生物学过程。由于此前尚无关于miRNA在大西洋鲑病毒病中作用的研究,我们旨在鉴定对鲑鱼α病毒(SAV)感染有反应的miRNA。研究了它们在感染与不同死亡率相关的SAV分离株后不同时间点的表达情况。此外,对鉴定出的miRNA的基因组序列进行了分析,以揭示假定的顺式调控元件,最后预测了它们的假定靶基因。

结果

鉴定出20个差异表达的miRNA(DE miRNA)。其中大多数在感染后表达增加,在病毒载量稳定或下降后达到最高水平。另一方面,一些miRNA(如miRNA - 21家族)在感染后的早期时间点表达下降。与不同SAV分离株相关的单个miRNA的时间表达存在显著差异。对SAV反应性免疫网络基因的靶基因预测表明,17个DE miRNA可靶向24个基因(如IRF3、IRF7)。将大西洋鲑转录组作为输入,又揭示了另外28个免疫网络基因作为假定靶标(如IRF5、IRF4)。大多数预测的靶基因促进炎症反应。miRNA基因的上游序列显示出高密度的顺式调控序列,这些序列是免疫网络转录因子(TF)的结合位点。因此,后期的高表达可能是由于免疫反应激活的TF促进了转录增加。基于计算机模拟的靶标预测,我们讨论了它们作为炎症早期促进因子或晚期抑制剂的假定作用。我们提出,与不同SAV分离株相关的表达差异可能导致它们死亡率的差异。

结论

本研究代表了探索大西洋鲑病毒 - 宿主相互作用中重要miRNA的第一步。我们鉴定出了几种对SAV感染有反应的miRNA。一些可能抑制有害炎症,而另一些可能促进早期免疫反应。它们的预测功能需要在功能试验中进行验证和进一步研究,以充分了解它们在免疫稳态中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ef5/5418855/5bef311ce2a7/12864_2017_3741_Fig1_HTML.jpg

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