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首页> 外文期刊>International journal of biological sciences >CNN3 Is Regulated by microRNA-1 during Muscle Development in Pigs
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CNN3 Is Regulated by microRNA-1 during Muscle Development in Pigs

机译:猪肌肉发育过程中CNN3受microRNA-1调控

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摘要

The calponin 3 (CNN3) gene has important functions involved in skeletal muscle development. MicroRNAs (miRNAs) play critical role in myogenesis by influencing the mRNA stability or protein translation of target gene. Based on paired microRNA and mRNA profiling in the prenatal skeletal muscle of pigs, our previous study suggested that CNN3 was differentially expressed and a potential target for miR-1. To further understand the biological function and regulation mechanism of CNN3, we performed co-expression analysis of CNN3 and miR-1 in developmental skeletal muscle tissues (16 stages) from Tongcheng (a Chinese domestic breed, obese-type) and Landrace (a Western, lean-type) pigs, respectively. Subsequently, dual luciferase and western blot assays were carried out. During skeletal muscle development, we observe a significantly negative expression correlation between the miR-1 and CNN3 at mRNA level. Our dual luciferase and western blot results suggested that the CNN3 gene was regulated by miR-1. We identified four single nucleotide polymorphisms (SNPs) contained within the CNN3 gene. Association analysis indicated that these CNN3 SNPs are significantly associated with birth weight (BW) and the 21-day weaning weight of the piglets examined. These facts indicate that CNN3 is a candidate gene associated with growth traits and regulated by miR-1 during skeletal muscle development in pigs.
机译:钙蛋白3(CNN3)基因具有参与骨骼肌发育的重要功能。 MicroRNA(miRNA)通过影响靶基因的mRNA稳定性或蛋白质翻译,在肌发生中起关键作用。基于成年猪骨骼肌中的microRNA和mRNA配对分析,我们先前的研究表明CNN3差异表达并且是miR-1的潜在靶标。为了进一步了解CNN3的生物学功能和调控机制,我们在桐城(中国人肥胖型)和长白(西方人)的发育性骨骼肌组织(16个阶段)中进行了CNN3和miR-1的共表达分析。 ,瘦肉型)猪。随后,进行了双重荧光素酶和蛋白质印迹测定。在骨骼肌发育过程中,我们在mRNA水平观察到miR-1和CNN3之间的显着负表达相关性。我们的双重荧光素酶和蛋白质印迹结果表明CNN3基因受miR-1调控。我们确定了CNN3基因中包含的四个单核苷酸多态性(SNP)。关联分析表明,这些CNN3 SNP与所检查仔猪的出生体重(BW)和21天断奶体重显着相关。这些事实表明,CNN3是与生长特性相关的候选基因,在猪骨骼肌发育过程中受miR-1调控。

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