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Different exercise modalities have distinct effects on the integrin-linked kinase (ILK) and Ca2+ signaling pathways in the male rat bone

机译:不同的运动方式对雄性大鼠骨骼中的整联蛋白相关激酶(ILK)和Ca2 +信号通路具有不同的影响

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摘要

Mechanical loading is essential to maintain optimal skeletal health. Despite the fact that early-life exercise has positive, long-lasting effects on the musculo-skeletal system, the response of the musculo-skeletal system to spontaneous low-impact exercise has been poorly studied. Previously, we identified subtle morphological changes in the femoral diaphysis of exercised animals compared to nonexercised controls. We hypothesized that significant changes in gene expression of cells should precede significant measurable phenotypic changes in the tissues of which they are part. Here, we employed RNA-Seq to analyse the transcriptome of the cortical bone from the femoral mid-diaphysis of prepubertal male Sprague-Dawley rats that were assigned to control (CON); bipedal stance (BPS); or wheel exercise (WEX) groups for 15 days. We identified 808 and 324 differentially expressed transcripts in the BPS and WEX animals respectively. While a number of transcripts change their levels in an exercise-specific manner, we identified 191 transcripts that were differentially expressed in both BPS and WEX. Importantly, we observed that the exercise mode had diametrically opposite effects on transcripts for multiple genes within the integrin-linked kinase (ILK) and Ca2+ signaling pathways such that they were up-regulated in BPS and down-regulated in WEX. The findings are important for our understanding of possible ways in which different exercise regimens might affect bone when normal activities apply mechanical stimuli during postnatal growth and development.
机译:机械负荷对于维持最佳骨骼健康至关重要。尽管早期运动对肌肉骨骼系统具有积极,持久的作用,但对肌肉骨骼系统对自发性低冲击力运动的反应的研究很少。以前,我们确定了与非运动对照组相比,运动动物股骨骨干的细微形态变化。我们假设细胞基因表达的显着变化应早于它们所组成的组织的显着可测量表型变化。在这里,我们使用RNA-Seq分析来自青春期前雄性Sprague-Dawley大鼠的股骨中骨干的皮质骨的转录组,该大鼠被指定为对照(CON);双足姿势(BPS);或轮操(WEX)组15天。我们分别在BPS和WEX动物中鉴定了808和324个差异表达的转录本。虽然许多转录本以锻炼特定的方式改变其水平,但我们确定了191个在BPS和WEX中差异表达的转录本。重要的是,我们观察到运动模式对整合素连接激酶(ILK)和Ca 2 + 信号通路内多个基因的转录本有截然相反的影响,从而使它们在BPS中下调-在WEX中受管制。这些发现对于我们理解正常运动在产后生长和发育期间施加机械刺激时可能影响骨骼的可能方式至关重要。

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