Kwak Seong Eun, Shin Hyung Eun, Zhang Di Di, Lee Jihyun, Yoon Kyung Jin, Bae Jun Hyun, Moon Hyo Youl, Song Wook
J Exerc Nutrition Biochem. 2019 Jun 30;23(2):28-33. doi: 10.20463/jenb.2019.0014.
Recent studies have shown that glucose-6-phosphate isomerase (GPI)-which is a glycolysis interconversion enzyme-reduces oxidative stress. However, these studies are limited to tumors such as fibrosarcoma, and there are no studies that have examined the effects of exercise on GPI expression in mice skeletal muscle. Furthermore, GPI acts in an autocrine manner thorough its receptor, autocrine motility factor receptor (AMFR); therefore, we investigated expression level changes of secreted GPI from skeletal muscle in in vitro study to examine the potential role of GPI on skeletal muscle.
First, we performed an in vitro study, to identify the condition that upregulates GPI levels in skeletal muscle cells; we treated C2C12 muscle cells with an exercise-mimicking chemical, AICAR. AICAR treatment upregulated GPI expression level in C2C12 cell and its secretomes. To confirm the direct effect of GPI on skeletal muscle cells, we treated C2C12 cells with GPI recombinant protein.
We found that GPI improved the viability of C2C12 cells. In the in vivo study, the exercise-treated mice group showed upregulated GPI expression in skeletal muscle. Based on the in vitro study results, we speculated that expression level of GPI in skeletal muscle might be associated with muscle function. We analyzed the association between GPI expression level and the grip strength of the all mice group. The mice group's grip strengths were upregulated after 2 weeks of treadmill exercise, and GPI expression level positively correlated with the grip strength.
These results suggested that the exercise-induced GPI expression in skeletal muscle might have a positive effect on skeletal muscle function.
近期研究表明,作为糖酵解互变酶的葡萄糖-6-磷酸异构酶(GPI)可减轻氧化应激。然而,这些研究仅限于纤维肉瘤等肿瘤,尚无研究探讨运动对小鼠骨骼肌中GPI表达的影响。此外,GPI通过其受体自分泌运动因子受体(AMFR)以自分泌方式发挥作用;因此,我们在体外研究中调查了骨骼肌分泌的GPI的表达水平变化,以检验GPI对骨骼肌的潜在作用。
首先,我们进行了一项体外研究,以确定上调骨骼肌细胞中GPI水平的条件;我们用一种模拟运动的化学物质AICAR处理C2C12肌肉细胞。AICAR处理上调了C2C12细胞及其分泌产物中GPI的表达水平。为了证实GPI对骨骼肌细胞的直接作用,我们用GPI重组蛋白处理C2C12细胞。
我们发现GPI提高了C2C12细胞的活力。在体内研究中,运动处理的小鼠组骨骼肌中GPI表达上调。基于体外研究结果,我们推测骨骼肌中GPI的表达水平可能与肌肉功能有关。我们分析了所有小鼠组的GPI表达水平与握力之间的关联。跑步机运动2周后,小鼠组的握力上调,且GPI表达水平与握力呈正相关。
这些结果表明,运动诱导的骨骼肌中GPI表达可能对骨骼肌功能有积极影响。