首页> 外文期刊>Cell Calcium: The International Interdisciplinary Forum for Research on Calcium >Transcriptomic changes in C2C12 myotubes triggered by electrical stimulation: Role of Ca-i(2+) -mediated and Ca-i(2+)-independent signaling and elevated [Na+](i)/[K+](i) ratio
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Transcriptomic changes in C2C12 myotubes triggered by electrical stimulation: Role of Ca-i(2+) -mediated and Ca-i(2+)-independent signaling and elevated [Na+](i)/[K+](i) ratio

机译:通过电刺激触发的C2C12肌管中的转录组变化:Ca-1(2+)介导和Ca-1(2 +) - 无关的信号传导和升高的[Na +](I)/ [k +](I)比率的作用

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Elevation of Ca-i(2+) and AMP-activated protein kinase (AMPK) are considered as major signals triggering tran-scriptomic changes in exercising skeletal muscle. Electrical pulse stimulation (EPS) of cultured myotubes is widely employed as an in vitro model of muscle contraction. This study examines the impact of Ca-i(2+)-mediated and Ca-i(2+)-independent signaling in transcriptomic changes in EPS-treated C2C12 myotubes. Electrical pulse stimulation (40 V, 1 Hz, 10 ms, 2 h) resulted in [Ca2+](i), oscillations, gain of Na-i(+), loss of K-i(+), and differential expression of 3215 transcripts. Additions of 10 mu M nicardipine abolished [Ca-i(2+)], oscillations but did not affect elevation of the [Na+](i)/[K+](i) ratio seen in EPS-treated myotubes. Differential expression of 1018 transcripts was preserved in the presence of nicardipine, indicating a Ca-i(2+)-independent mechanism of excitation-transcription coupling. Among nicardipine-resistant transcripts, we noted 113 transcripts whose expression was also affected by partial Na+,K+-ATPase inhibition with 30 mu M ouabain providing the same elevation of the [Na+](i)/[K+](i) ratio as in EPS-treated cells. Electrical pulse stimulation increased phosphorylation of CREB, ATF-1, Akt, ERK, and p38 MAPK without any impact on phosphorylation of acetyl-CoA carboxylase and Unc-51 like autophagy activating kinase-1, i.e. downstream markers of AMPK activation. Unlike CREB, ATF-1, and MAPKs, an increment in Akt phosphorylation was abolished by nicardipine. Thus, our results show that Ca-i(2+) -independent signaling plays a key role in altered expression of 30% of studied genes in EPS-treated myotubes. This signaling pathway is at least partially triggered by dissipation of transmembrane gradients of monovalent cations.
机译:Ca-1(2+)和AMP活化蛋白激酶(AMPK)的升高被认为是触发抗骨骼肌的Tran-scressomic变化的主要信号。培养的肌管的电脉冲刺激(EPS)被广泛用于肌肉收缩的体外模型。本研究检查了Ca-i(2 +)介导和Ca-i(2 +) - Indivey信号传递在转录组的C2C12 myotubes中的影响的影响。电脉冲刺激(40V,1Hz,10ms,2小时)导致[Ca2 +](I),振荡,Na-I(+)的增益,K-I(+)的丧失,以及3215份转录物的差异表达。减少了10μmniCardipine的添加[Ca-1(2+)],振荡但不影响在EPS处理的肌管中看到的[Na +](I)/ [k +](I)比的升高。在Nicardipine存在下保留了1018转录物的差异表达,表明Ca-1(2 +)的激发转录偶联机制。在Nicardipine抗性转录物中,我们注意到113个转录物,其表达也受到部分Na +,K + -AtPase抑制的影响,其具有30μmOuabain,提供与其中的[Na +](I)/ [K +](I)比的相同升高eps治疗细胞。电脉冲刺激增加CREB,ATF-1,AKT,ERK和P38 MAPK的磷酸化,而不会对乙酰-CoA羧化酶和UNC-51的磷酸化相似的磷酸化,例如自噬激活激酶-1,即AMPK活化的下游标记。与CREB,ATF-1和MAPKS不同,Nicardipine废除了Akt磷酸化中的增量。因此,我们的结果表明,CA-I(2+) - 依赖性信号传导在EPS治疗的肌管中改变了30%的研究表达的关键作用。该信号传导途径至少部分地通过透射通阳离子的跨膜梯度而触发。

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