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Strong conservation of inbred mouse strain microRNA loci but broad variation in brain microRNAs due to RNA editing and isomiR expression

机译:强守卫近交鼠菌株MicroRNA基因座,但由于RNA编辑和ISOMIR表达引起的脑微稻草的广泛变化

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Diversity in the structure and expression of microRNAs, important regulators of gene expression, arises from SNPs, duplications followed by divergence, production of isomiRs, and RNA editing. Inbred mouse strains and crosses using them are important reference populations for genetic mapping, and as models of human disease. We determined the nature and extent of interstrain miRNA variation by (i) identifying miRNA SNPs in whole-genome sequence data from 36 strains, and (ii) examining miRNA editing and expression in hippocampus (Hpc) and frontal cortex (FCx) of six strains, to facilitate the study of miRNAs in neurobehavioral phenotypes. miRNA loci were strongly conserved among the 36 strains, but even the highly conserved seed region contained 16 SNPs. In contrast, we identified RNA editing in 58.9% of miRNAs, including 11 consistent editing events in the seed region. We confirmed the functional significance of three conserved edits in the miR-379/410 cluster, demonstrating that edited miRNAs gained novel target mRNAs not recognized by the unedited miRNAs. We found significant interstrain differences in miRNA and isomiR expression: Of 779 miRNAs expressed in Hpc and 719 in FCx, 262 were differentially expressed (190 in Hpc, 126 in FCx, 54 in both). We also identified 32 novel miRNA candidates using miRNA prediction tools. Our studies provide the first comprehensive analysis of SNP, isomiR, and RNA editing variation in miRNA loci across inbred mouse strains, and a detailed catalog of expressed miRNAs in Hpc and FCx in six commonly used strains. These findings will facilitate the molecular analysis of neurological and behavioral phenotypes in this model organism.
机译:MicroRNA的结构和表达中的多样性,基因表达的重要调节因子,由SNP,重复性接下来发散,产生Isomirs和RNA编辑。使用它们的近交小鼠菌株和交叉是遗传映射的重要参考群体,作为人类疾病的模型。我们确定(i)鉴定来自36个菌株的全基因组序列数据中的miRNA SNP的Interstrain miRNA变异的性质和程度,以及(II)在海马(HPC)中的miRNA编辑和表达中的六种菌株,促进在神经兽性表型中的miRNA的研究。 MiRNA Loci在36株中受到强烈保守,但即使是高度保守的种子区含有16个SNP。相比之下,我们确定了58.9%的miRNA中的RNA编辑,包括种子区域中的11个一致的编辑事件。我们确认了MIR-379/410集群中的三个保守编辑的功能意义,证明编辑的MiRNA获得了未经编辑的MiRNA无法识别的新型目标MRNA。我们发现MiRNA和IsomiR表达的显着筛选:在HPC和719中,在FCX中表达的779个miRNA,262例差异表达(190例HPC,FCX,两者中为54中的126例)。我们还使用MiRNA预测工具鉴定了32种新型miRNA候选者。我们的研究提供了跨越小鼠菌株的MiRNA基因座中的SNP,ISOMIR和RNA编辑变异的第一次综合分析,以及在六种常用的菌株中HPC和FCX中表达miRNA的详细目录。这些发现将促进该模型生物体中神经系统和行为表型的分子分析。

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