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成年骨骼肌中的电刺激可诱导MCU复合体基因表达的变化。

Changes in Gene Expression of the MCU Complex Are Induced by Electrical Stimulation in Adult Skeletal Muscle.

作者信息

Quezada Esteban R, Díaz-Vegas Alexis, Jaimovich Enrique, Casas Mariana

机构信息

Center for Exercise, Metabolism, and Cancer, Physiology and Biophysics Program, Biomedical Sciences Institute (ICBM), Faculty of Medicine, University of Chile, Santiago, Chile.

出版信息

Front Physiol. 2021 Jan 26;11:601313. doi: 10.3389/fphys.2020.601313. eCollection 2020.

Abstract

The slow calcium transient triggered by low-frequency electrical stimulation (ES) in adult muscle fibers and regulated by the extracellular ATP/IP3/IP3R pathway has been related to muscle plasticity. A regulation of muscular tropism associated with the MCU has also been described. However, the role of transient cytosolic calcium signals and signaling pathways related to muscle plasticity over the regulation of gene expression of the MCU complex (MCU, MICU1, MICU2, and EMRE) in adult skeletal muscle is completely unknown. In the present work, we show that 270 0.3-ms-long pulses at 20-Hz ES (and not at 90 Hz) transiently decreased the mRNA levels of the MCU complex in mice flexor digitorum brevis isolated muscle fibers. Importantly, when ATP released after 20-Hz ES is hydrolyzed by the enzyme apyrase, the repressor effect of 20 Hz on mRNA levels of the MCU complex is lost. Accordingly, the exposure of muscle fibers to 30 μM exogenous ATP produces the same effect as 20-Hz ES. Moreover, the use of apyrase in resting conditions (without ES) increased mRNA levels of MCU, pointing out the importance of extracellular ATP concentration over MCU mRNA levels. The use of xestospongin B (inhibitor of IP3 receptors) also prevented the decrease of mRNA levels of MCU, MICU1, MICU2, and EMRE mediated by a low-frequency ES. Our results show that the MCU complex can be regulated by electrical stimuli in a frequency-dependent manner. The changes observed in mRNA levels may be related to changes in the mitochondria, associated with the phenotypic transition from a fast- to a slow-type muscle, according to the described effect of this stimulation frequency on muscle phenotype. The decrease in mRNA levels of the MCU complex by exogenous ATP and the increase in MCU levels when basal ATP is reduced with the enzyme apyrase indicate that extracellular ATP may be a regulator of the MCU complex. Moreover, our results suggest that this regulation is part of the axes linking low-frequency stimulation with ATP/IP3/IP3R.

摘要

成年肌纤维中由低频电刺激(ES)触发并受细胞外ATP/IP3/IP3R途径调控的缓慢钙瞬变与肌肉可塑性有关。也有关于与线粒体钙单向转运体(MCU)相关的肌肉嗜性调节的描述。然而,在成年骨骼肌中,瞬时胞质钙信号和与肌肉可塑性相关的信号通路对MCU复合体(MCU、线粒体钙摄取蛋白1(MICU1)、线粒体钙摄取蛋白2(MICU2)和内质网钙释放蛋白(EMRE))基因表达调控的作用完全未知。在本研究中,我们发现,在20赫兹(而非90赫兹)的ES下施加270个0.3毫秒长的脉冲会使小鼠趾短屈肌分离肌纤维中MCU复合体的mRNA水平短暂降低。重要的是,当20赫兹ES后释放的ATP被胞外ATP酶水解时,20赫兹对MCU复合体mRNA水平的抑制作用消失。因此,将肌纤维暴露于30 μM外源性ATP会产生与20赫兹ES相同的效果。此外,在静息状态(无ES)下使用胞外ATP酶会增加MCU的mRNA水平,表明细胞外ATP浓度对MCU mRNA水平的重要性。使用西司他丁B(IP3受体抑制剂)也可防止低频ES介导的MCU、MICU1、MICU2和EMRE mRNA水平的降低。我们的结果表明,MCU复合体可被电刺激以频率依赖的方式调节。根据这种刺激频率对肌肉表型的描述作用,mRNA水平的变化可能与线粒体的变化有关,这与从快肌型向慢肌型的表型转变相关。外源性ATP使MCU复合体mRNA水平降低,而用胞外ATP酶降低基础ATP时MCU水平升高,这表明细胞外ATP可能是MCU复合体的调节因子。此外,我们的结果表明,这种调节是将低频刺激与ATP/IP3/IP3R联系起来的轴的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b964/7870689/0cb8bc40e23f/fphys-11-601313-g001.jpg

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