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The effect of muscle contraction on the regulation of adenosine formation in rat skeletal muscle cells

机译:肌肉收缩对大鼠骨骼肌细胞腺苷形成的调节作用

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class="enumerated" style="list-style-type:decimal">The present study examined the effect of muscle contraction on the rate of extracellular adenosine formation and on the distribution of 5′ nucleotidase in primary rat skeletal muscle cells in culture. Experiments were also performed to determine whether the muscle cells release a metabolite upon contraction which may influence the extracellular production of adenosine.Muscle contraction, induced by electrical stimulation, increased (P < 0.05) the rate of adenosine formation in the presence of physiological concentrations (2 and 5 μM) of adenosine monophosphate (AMP). Muscle contraction also led to an increase (P < 0.05) in the maximal rate of extracellular adenosine formation from 4.09 ± 0.19 to 7.04 ± 0.27 μmol (g protein)−1 min−1. Similarly, homogenates of contracted muscle cells had a higher (by 19.5 ± 10.5 %; P < 0.05) AMP 5′ nucleotidase activity than homogenates of control cells.Addition of buffer from contracted cells to control cells induced an elevation (18.4 ± 5.3 %; P < 0.05) in the rate of adenosine formation. The rate of adenosine formation was also increased with decreased intracellular adenylate charge (P < 0.05).Cell homogenates treated with detergent had a higher (by 58.0 ± 16.3 %; P < 0.05) AMP 5′ nucleotidase activity than untreated homogenates, suggesting the existence of an enclosed pool of 5′ nucleotidase within the muscle cells. The rate of adenosine formation in the detergent-treated homogenates was similar for electrically stimulated and non-electrically stimulated cells.The present data show that muscle contraction induces an enhanced extracellular adenosine production via an increase in the activity of ecto AMP 5′ nucleotidase. The activity of 5′ nucleotidase can be elevated via a compound released by muscle cells during contraction and by alteration in intracellular adenylate charge. It is furthermore proposed that the extracellular adenosine formation is increased by translocation of 5′ nucleotidase from an enclosed intracellular pool to the muscle membrane.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 本研究检查了肌肉收缩对培养的原代大鼠骨骼肌细胞中细胞外腺苷形成速率和5'核苷酸酶分布的影响。还进行了实验以确定肌肉细胞是否在收缩时释放代谢物,这可能会影响腺苷的细胞外产生。 电刺激引起的肌肉收缩使腺苷形成的速率增加(P <0.05)在生理浓度(2和5μM)的单磷酸腺苷(AMP)存在下。肌肉收缩还导致细胞外腺苷形成的最大速率从4.09±0.19增加到7.04±0.27μmol(g蛋白) -1 min -1 (P <0.05) sup>。同样,收缩肌细胞的匀浆比对照细胞的匀浆具有更高的AMP 5'核苷酸酶活性(达19.5±10.5%; P <0.05)。 从收缩细胞向对照细胞中添加缓冲液可诱导腺苷形成率升高(18.4±5.3%; P <0.05)。腺苷形成的速率也随着细胞内腺苷酸电荷的减少而增加(P <0.05)。 用去污剂处理的细胞匀浆具有较高的(58.0±16.3%; P <0.05)AMP 5'核苷酸酶活性与未处理的匀浆相比,提示肌肉细胞内存在5'核苷酸酶的封闭池。在电刺激和非电刺激的细胞中,去污剂处理过的匀浆中腺苷的形成速率相似。 目前的数据表明,肌肉收缩通过增加肌醇的活性来诱导细胞外腺苷产生的增强。 ecto AMP 5'核苷酸酶。 5'核苷酸酶的活性可以通过肌肉细胞在收缩过程中释放的化合物以及细胞内腺苷酸电荷的改变而提高。进一步提出,通过将5'核苷酸酶从封闭的细胞内池转移至肌膜,可增加细胞外腺苷的形成。

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