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Identification of qPCR reference genes suitable for normalizing gene expression in the mdx mouse model of Duchenne muscular dystrophy

机译:鉴定适合规范Duchenne肌营养不良症的mdx小鼠模型中基因表达的qPCR参考基因

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摘要

The mdx mouse is the most widely-used animal model of the human disease Duchenne muscular dystrophy, and quantitative PCR analysis of gene expression in the muscles of this animal plays a key role in the study of pathogenesis and disease progression and in evaluation of potential therapeutic interventions. Normalization to appropriate stably-expressed reference genes is essential for accurate quantitative measurement, but determination of such genes is challenging: healthy and dystrophic muscles present very different transcriptional environments, further altering with disease progression and muscle use, raising the possibility that no single gene or combination of genes may be stable under all experimental comparative scenarios. Despite the pedigree of this animal model, this problem remains unaddressed. The aim of this work was therefore to comprehensively assess reference gene suitability in the muscles of healthy and dystrophic mice, identifying reference genes appropriate for specific experimental comparisons, and determining whether an essentially universally-applicable set of genes exists. Using a large sample collection comprising multiple muscles (including the tibialis anterior, diaphragm and heart muscles) taken from healthy and mdx mice at three disease-relevant ages, and a panel of sixteen candidate reference genes (FBXO38, FBXW2, MON2, ZFP91, HTATSF1, GAPDH, ACTB, 18S, CDC40, SDHA, RPL13a, CSNK2A2, AP3D1, PAK1IP1, B2M and HPRT1), we used the geNorm, BestKeeper and Normfinder algorithms to identify genes that were stable under multiple possible comparative scenarios. We reveal that no single gene is stable under all conditions, but a normalization factor derived from multiple genes (RPL13a, CSNK2A2, AP3D1 and the widely-used ACTB) appears suitable for normalizing gene expression in both healthy and dystrophic mouse muscle regardless of muscle type or animal age. We further show that other popular reference genes, including GAPDH, are markedly disease- or muscle-type correlated. This study demonstrates the importance of empirical reference gene identification, and should serve as a valuable resource for investigators wishing to study gene expression in mdx mice.
机译:mdx小鼠是人类疾病Duchenne肌营养不良症中使用最广泛的动物模型,该动物肌肉中基因表达的定量PCR分析在发病机理和疾病进展的研究以及潜在治疗方法的评估中起着关键作用干预。正确稳定表达的参考基因的标准化对于准确的定量测量至关重要,但是确定此类基因具有挑战性:健康和营养不良的肌肉呈现出截然不同的转录环境,随着疾病的进展和肌肉的使用而进一步改变,从而增加了没有单个基因或基因组合可能在所有实验比较情况下都是稳定的。尽管有这种动物模型的血统书,但这个问题仍然没有解决。因此,这项工作的目的是全面评估参考基因在健康和营养不良小鼠肌肉中的适用性,确定适合于特定实验比较的参考基因,并确定是否存在一套基本通用的基因。使用来自三个疾病相关年龄的健康和mdx小鼠的包括多块肌肉(包括胫骨前肌,and肌和心肌)的大量样本,以及一组十六种候选参考基因(FBXO38,FBXW2,MON2,ZFP91,HTATSF1 ,GAPDH,ACTB,18S,CDC40,SDHA,RPL13a,CSNK2A2,AP3D1,PAK1IP1, B2M和HPRT1 ),我们使用geNorm,BestKeeper和Normfinder算法来鉴定在多种可能的比较条件下稳定的基因场景。我们发现没有一个单一的基因在所有条件下都是稳定的,但是归一化因子来自多个基因( RPL13a CSNK2A2 AP3D1 和广泛使用的 ACTB )似乎适合正常化健康和营养不良的小鼠肌肉中的基因表达,而与肌肉类型或动物年龄无关。我们进一步表明,其他流行的参考基因,包括 GAPDH ,与疾病或肌肉类型具有显着相关性。这项研究证明了经验参考基因鉴定的重要性,并且应该为希望研究 mdx 小鼠基因表达的研究者提供宝贵的资源。

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