Identification of reference microRNAs in skeletal muscle of a canine model of Duchenne muscular dystrophy.

Q1 Medicine Wellcome Open Research Pub Date : 2024-11-20 eCollection Date: 2024-01-01 DOI:10.12688/wellcomeopenres.22481.2
Dominique O Riddell, John C W Hildyard, Rachel C M Harron, Dominic J Wells, Richard J Piercy
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Abstract

Background: Duchenne muscular dystrophy (DMD) is a fatal muscle wasting disease caused by mutations in the dystrophin gene. DE50-MD dogs are an animal model of DMD used as a final translational model for evaluation of promising treatments. MicroRNA (miR) expressions in the muscle of DE50-MD dogs represent potential biomarkers, but stable reference miRs must first be identified. The aim of this paper was to establish a panel of reference miRs for WT and DE50-MD dogs over a range of ages and muscle groups.

Methods: RNA was extracted from WT and DE50-MD dog (N=6 per genotype) vastus lateralis muscle samples collected longitudinally at 3, 6, 9, 12, 15 and 18 months of age, and from muscles collected post-mortem (N=3 per genotype; cranial tibial, semimembranosus, lateral triceps and diaphragm). 87 RNAs were quantified in a subset of 6-month-old WT and DE50-MD muscles (N=4 per genotype) using the QIAcuity miFinder panel. GeNorm, BestKeeper and Normfinder were used to identify a candidate panel of the 8 most stable small RNAs, which were then quantified in all RNA samples, alongside the commonly used reference RNA snRNA U6.

Results: The most stable miRs of this subset were used to normalise quantities of dystromiRs miR-1, miR-133a and miR-206, and fibromiR miR-214. MicroRNAs miR-191, let-7b, miR-125a and miR-15a were the most stable miRs tested, while snRNA U6 performed poorly. DystromiR expression, normalised to the geometric mean of the panel of reference miRs, was lower for miR-1 and miR-133a in DE50-MD compared to WT muscles, while miR-206 levels did not significantly differ between genotypes. FibromiR miR-214 was 2- to 4-fold higher in DE50-MD versus WT muscles.

Conclusions: A normalisation factor derived from miR-191, let-7b, miR-125a and miR-15a is suitable for normalising miR expression data from WT and DE50-MD muscle over a range of ages and muscle types.

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犬杜氏肌营养不良模型骨骼肌参考microrna的鉴定。
背景:杜氏肌营养不良症(DMD)是一种由肌营养不良蛋白基因突变引起的致死性肌肉萎缩疾病。DE50-MD犬是DMD的动物模型,用于评估有前途的治疗方法的最终转化模型。DE50-MD犬肌肉中的MicroRNA (miR)表达是潜在的生物标志物,但必须首先确定稳定的参考miR。本文的目的是为不同年龄和肌肉群的WT和DE50-MD犬建立一组参考mir。方法:分别从3、6、9、12、15和18月龄纵向采集的WT和DE50-MD犬股外侧肌样本(每个基因型N=6)和死后采集的肌肉样本(每个基因型N=3)中提取RNA;颅胫骨,半膜肌,外侧三头肌和横膈膜)。使用QIAcuity miFinder小组对6个月大的WT和DE50-MD肌肉亚组(每个基因型N=4)中的87个rna进行量化。使用GeNorm, BestKeeper和Normfinder来鉴定8个最稳定的小RNA候选组,然后在所有RNA样品中与常用的参考RNA snRNA U6一起定量。结果:该亚群中最稳定的mir被用于标准化miR-1、miR-133a和miR-206以及纤维mir - miR-214的数量。MicroRNAs miR-191、let-7b、miR-125a和miR-15a是测试中最稳定的mirnas,而snRNA U6表现较差。与WT肌肉相比,DE50-MD中miR-1和miR-133a的DystromiR表达归一化为参考mir组的几何平均值,而miR-206的水平在基因型之间没有显著差异。在DE50-MD肌肉中,FibromiR -214比WT肌肉高2- 4倍。结论:由miR-191、let-7b、miR-125a和miR-15a衍生的一种正常化因子适用于对不同年龄和肌肉类型的WT和DE50-MD肌肉中的miR表达数据进行正常化。
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来源期刊
Wellcome Open Research
Wellcome Open Research Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (all)
CiteScore
5.50
自引率
0.00%
发文量
426
审稿时长
1 weeks
期刊介绍: Wellcome Open Research publishes scholarly articles reporting any basic scientific, translational and clinical research that has been funded (or co-funded) by Wellcome. Each publication must have at least one author who has been, or still is, a recipient of a Wellcome grant. Articles must be original (not duplications). All research, including clinical trials, systematic reviews, software tools, method articles, and many others, is welcome and will be published irrespective of the perceived level of interest or novelty; confirmatory and negative results, as well as null studies are all suitable. See the full list of article types here. All articles are published using a fully transparent, author-driven model: the authors are solely responsible for the content of their article. Invited peer review takes place openly after publication, and the authors play a crucial role in ensuring that the article is peer-reviewed by independent experts in a timely manner. Articles that pass peer review will be indexed in PubMed and elsewhere. Wellcome Open Research is an Open Research platform: all articles are published open access; the publishing and peer-review processes are fully transparent; and authors are asked to include detailed descriptions of methods and to provide full and easy access to source data underlying the results to improve reproducibility.
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