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Synergistic and Antagonistic Interplay between Myostatin Gene Expression and Physical Activity Levels on Gene Expression Patterns in Triceps Brachii Muscles of C57/BL6 Mice

机译:C57 / BL6小鼠肱三头肌肌肉中肌生长抑制素基因表达与体育活动水平对基因表达模式的协同和拮抗相互作用

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摘要

Levels of myostatin expression and physical activity have both been associated with transcriptome dysregulation and skeletal muscle hypertrophy. The transcriptome of triceps brachii muscles from male C57/BL6 mice corresponding to two genotypes (wild-type and myostatin-reduced) under two conditions (high and low physical activity) was characterized using RNA-Seq. Synergistic and antagonistic interaction and ortholog modes of action of myostatin genotype and activity level on genes and gene pathways in this skeletal muscle were uncovered; 1,836, 238, and 399 genes exhibited significant (FDR-adjusted P-value < 0.005) activity-by-genotype interaction, genotype and activity effects, respectively. The most common differentially expressed profiles were (i) inactive myostatin-reduced relative to active and inactive wild-type, (ii) inactive myostatin-reduced and active wild-type, and (iii) inactive myostatin-reduced and inactive wild-type. Several remarkable genes and gene pathways were identified. The expression profile of nascent polypeptide-associated complex alpha subunit (Naca) supports a synergistic interaction between activity level and myostatin genotype, while Gremlin 2 (Grem2) displayed an antagonistic interaction. Comparison between activity levels revealed expression changes in genes encoding for structural proteins important for muscle function (including troponin, tropomyosin and myoglobin) and for fatty acid metabolism (some linked to diabetes and obesity, DNA-repair, stem cell renewal, and various forms of cancer). Conversely, comparison between genotype groups revealed changes in genes associated with G1-to-S-phase transition of the cell cycle of myoblasts and the expression of Grem2 proteins that modulate the cleavage of the myostatin propeptide. A number of myostatin-feedback regulated gene products that are primarily regulatory were uncovered, including microRNA impacting central functions and Piezo proteins that make cationic current-controlling mechanosensitive ion channels. These important findings extend hypotheses of myostatin and physical activity master regulation of genes and gene pathways, impacting medical practices and therapies associated with muscle atrophy in humans and companion animal species and genome-enabled selection practices applied to food-production animal species.
机译:肌生长抑制素的表达水平和体育活动都与转录组失调和骨骼肌肥大有关。使用RNA-Seq表征了在两种条件下(高和低体力活动)对应于两种基因型(野生型和肌肉生长抑制素降低)的雄性C57 / BL6小鼠肱三头肌的转录组。尚未发现肌肉生长抑制素基因型和活性水平对骨骼肌基因和基因途径的协同和拮抗相互作用以及直系同源的作用方式; 1,836、238和399个基因分别表现出显着的(FDR调整后的P值<0.005)按基因型的相互作用,基因型和活性效应。最常见的差异表达谱是(i)相对于活性和非活性野生型减少的肌肉生长抑制素减少,(ii)肌肉抑制素活性降低的和活跃的野生型,以及(iii)肌肉抑制素活性降低的和非活性的野生型。确定了几个杰出的基因和基因途径。新生多肽相关的复杂α亚基(Naca)的表达谱支持活性水平和肌生长抑制素基因型之间的协同相互作用,而Gremlin 2(Grem2)显示出拮抗作用。活性水平之间的比较表明,编码对肌肉功能重要的结构蛋白(包括肌钙蛋白,原肌球蛋白和肌红蛋白)和脂肪酸代谢(与糖尿病和肥胖有关的某些蛋白,DNA修复,干细胞更新以及各种形式的脂肪酸)的基因表达变化癌症)。相反,基因型组之间的比较揭示了与成肌细胞的细胞周期从G1到S期过渡相关的基因的变化,以及调节Myostatin前肽裂解的Grem2蛋白的表达。尚未发现许多主要由肌生成抑制素反馈调控的基因产物,包括影响中心功能的microRNA和构成阳离子电流控制机械敏感离子通道的压电蛋白。这些重要发现扩展了肌肉生长抑制素和基因和基因途径的体育活动总调控的假说,影响了与人类和伴侣动物肌肉萎缩相关的医学实践和疗法,以及应用于食品生产动物物种的基因组选择实践。

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