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微小RNA不调控多甲藻(Lingulodinium polyedrum)中的昼夜节律性蛋白质合成。

miRNAs Do Not Regulate Circadian Protein Synthesis in the Dinoflagellate Lingulodinium polyedrum.

作者信息

Dagenais-Bellefeuille Steve, Beauchemin Mathieu, Morse David

机构信息

Institut de Recherche en Biologie Végétale, Département de Sciences Biologiques, Université de Montréal, Montréal, Québec, Canada.

出版信息

PLoS One. 2017 Jan 19;12(1):e0168817. doi: 10.1371/journal.pone.0168817. eCollection 2017.

Abstract

Dinoflagellates have been shown to express miRNA by bioinformatics and RNA blot (Northern) analyses. However, it is not yet known if miRNAs are able to alter gene expression in this class of organisms. We have assessed the possibility that miRNA may mediate circadian regulation of gene expression in the dinoflagellate Lingulodinium polyedrum using the Luciferin Binding Protein (LBP) as a specific example. LBP is a good candidate for regulation by miRNA since mRNA levels are constant over the daily cycle while protein synthesis is restricted by the circadian clock to a period of several hours at the start of the night phase. The transcriptome contains a potential DICER and an ARGONAUTE, suggesting the machinery for generating miRNAs is present. Furthermore, a probe directed against an abundant Symbiodinium miRNA cross reacts on Northern blots. However, L. polyedrum has no small RNAs detectable by ethidium bromide staining, even though higher plant miRNAs run in parallel are readily observed. Illumina sequencing of small RNAs showed that the majority of reads did not have a match in the L. polyedrum transcriptome, and those that did were almost all sense strand mRNA fragments. A direct search for 18-26 nucleotide long RNAs capable of forming duplexes with a 2 base 3' overhang detected 53 different potential miRNAs, none of which was able to target any of the known circadian regulated genes. Lastly, a microscopy-based test to assess synthesis of the naturally fluorescent LBP in single cells showed that neither double-stranded nor antisense lbp RNA introduced into cells by microparticle bombardment prior to the time of LBP synthesis were able to reduce the amount of LBP produced. Taken together, our results indicate that circadian control of protein synthesis in L. polyedrum is not mediated by miRNAs.

摘要

通过生物信息学和RNA印迹(Northern)分析已表明,甲藻能表达微小RNA(miRNA)。然而,在这类生物体中miRNA是否能够改变基因表达尚不清楚。我们以荧光素结合蛋白(LBP)作为一个具体实例,评估了miRNA可能介导甲藻多甲藻(Lingulodinium polyedrum)中基因表达昼夜节律调控的可能性。LBP是受miRNA调控的一个良好候选对象,因为其mRNA水平在每日周期中保持恒定,而蛋白质合成受昼夜节律时钟限制在夜间开始的几个小时内。转录组中含有一个潜在的Dicer和一个AGO蛋白,这表明存在生成miRNA的机制。此外,一种针对大量共生甲藻miRNA的探针在Northern印迹上发生交叉反应。然而,即使很容易观察到与之平行运行的高等植物miRNA,多甲藻也没有可通过溴化乙锭染色检测到的小RNA。小RNA的Illumina测序表明,大多数读数在多甲藻转录组中没有匹配项,而那些有匹配项的几乎都是有义链mRNA片段。直接搜索能够与2个碱基的3'突出端形成双链体的18 - 26个核苷酸长的RNA,检测到53种不同的潜在miRNA,其中没有一种能够靶向任何已知的昼夜节律调控基因。最后,一项基于显微镜的测试,用于评估单细胞中天然荧光LBP的合成,结果表明在LBP合成之前通过微粒轰击引入细胞的双链或反义lbp RNA均不能减少所产生的LBP量。综上所述,我们的结果表明,多甲藻中蛋白质合成的昼夜节律控制不是由miRNA介导的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e82/5245829/871ec119adee/pone.0168817.g001.jpg

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