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The role of phosphoinositide 3-kinase and phosphatidic acid in the regulation of mammalian target of rapamycin following eccentric contractions

机译:偏心收缩后磷酸肌醇3-激酶和磷脂酸在雷帕霉素哺乳动物靶标调控中的作用

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摘要

Resistance exercise induces a hypertrophic response in skeletal muscle and recent studies have begun to shed light on the molecular mechanisms involved in this process. For example, several studies indicate that signalling by the mammalian target of rapamycin (mTOR) is necessary for a hypertrophic response. Furthermore, resistance exercise has been proposed to activate mTOR signalling through an upstream pathway involving the phosphoinositide 3-kinase (PI3K) and protein kinase B (PKB); however, this hypothesis has not been thoroughly tested. To test this hypothesis, we first evaluated the temporal pattern of signalling through PI3K–PKB and mTOR following a bout of resistance exercise with eccentric contractions (EC). Our results indicated that the activation of signalling through PI3K–PKB is a transient event (<15 min), while the activation of mTOR is sustained for a long duration (>12 h). Furthermore, inhibition of PI3K–PKB activity did not prevent the activation of mTOR signalling by ECs, indicating that PI3K–PKB is not part of the upstream regulatory pathway. These observations led us to investigate an alternative pathway for the activation of mTOR signalling involving the synthesis of phosphatidic acid (PA) by phospholipase D (PLD). Our results demonstrate that ECs induce a sustained elevation in [PA] and inhibiting the synthesis of PA by PLD prevented the activation of mTOR. Furthermore, we determined that similar to ECs, PA activates mTOR signalling through a PI3K–PKB-independent mechanism. Combined, the results of this study indicate that the activation of mTOR following eccentric contractions occurs through a PI3K–PKB-independent mechanism that requires PLD and PA.
机译:抵抗运动在骨骼肌中引起肥大性反应,最近的研究已经开始阐明该过程涉及的分子机制。例如,一些研究表明,哺乳动物目标雷帕霉素(mTOR)发出的信号对于肥大性反应是必需的。此外,已经提出了抗性锻炼以通过涉及磷酸肌醇3-激酶(PI3K)和蛋白激酶B(PKB)的上游途径激活mTOR信号传导。但是,这一假设尚未得到充分检验。为了检验该假设,我们首先评估了在进行了带有偏心收缩(EC)的阻力运动后,通过PI3K–PKB和mTOR发出的信号的时间模式。我们的结果表明,通过PI3K–PKB激活信号是一个短暂事件(<15分钟),而mTOR的激活则持续了很长时间(> 12小时)。此外,对PI3K–PKB活性的抑制并不能阻止EC激活mTOR信号,这表明PI3K–PKB不是上游调节途径的一部分。这些观察结果使我们研究了激活mTOR信号的另一种途径,该途径涉及磷脂酶D(PLD)合成磷脂酸(PA)。我们的结果表明,ECs诱导[PA]持续升高,并且通过PLD抑制PA的合成阻止了mTOR的激活。此外,我们确定,类似于EC,PA通过独立于PI3K–PKB的机制激活mTOR信号传导。综合起来,这项研究的结果表明,偏心收缩后mTOR的激活是通过需要PLD和PA的独立于PI3K–PKB的机制发生的。

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