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Muscle ion transporters and antioxidative proteins have different adaptive potential in arm than in leg skeletal muscle with exercise training

机译:在进行运动训练时手臂的肌肉离子转运蛋白和抗氧化蛋白的适应能力与腿部骨骼肌不同

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摘要

It was evaluated whether upper‐body compared to lower‐body musculature exhibits a different phenotype in relation to capacity for handling reactive oxygen species (ROS), H+, La, Na+, K+ and also whether it differs in adaptive potential to exercise training. Eighty‐three sedentary premenopausal women aged 45 ± 6 years (mean ± SD) were randomized into a high‐intensity intermittent swimming group (HIS, n = 21), a moderate‐intensity swimming group (MOS, n = 21), a soccer group (SOC, n = 21), or a control group (CON, n = 20). Intervention groups completed three weekly training sessions for 15 weeks, and pre‐ and postintervention biopsies were obtained from deltoideus and vastus lateralis muscle. Before training, monocarboxylate transporter 4 (MCT4), Na+/K+ pump α 2, and superoxide dismutase 2 (SOD2) expressions were lower (P < 0.05) in m. deltoideus than in m. vastus lateralis, whereas deltoid had higher (P < 0.05) Na+/H+ exchanger 1 (NHE1) expression. As a result of training, Na+/K+ pump α 2 isoform expression was elevated only in deltoideus muscle, while upregulation (< 0.05) of the α 1 and β 1 subunits, phospholemman (FXYD1), NHE1, and superoxide dismutase 1 expression occurred exclusively in vastus lateralis muscle. The increased (< 0.05) expression of MCT4 and SOD2 in deltoid muscle after HIS and vastus lateralis muscle after SOC were similar. In conclusion, arm musculature displays lower basal ROS, La, K+ handling capability but higher Na+‐dependent H+ extrusion capacity than leg musculature. Training‐induced changes in the ion‐transporting and antioxidant proteins clearly differed between muscle groups.
机译:评估了上身肌肉与下身肌肉相比在处理活性氧(ROS),H + ,La -, Na + ,K + 以及运动训练的适应性潜力是否不同。将83名45±6岁(平均±SD)的久坐的绝经前女性随机分为一个高强度间歇游泳组(HIS,n = 21),一个中等强度游泳组(MOS,n = 21),一个足球组(SOC,n = 21)或对照组(CON,n = 20)。干预组完成了为期15周的每周3次培训,并从三角洲和外侧股肌获得了干预前后的活检。训练前,单羧酸转运蛋白4(MCT4),Na + / K + 泵α2和超氧化物歧化酶2(SOD2)的表达在m时较低(P <0.05) 。三角洲比米股外侧肌,而三角肌具有较高的(P <0.05)Na + / H + 交换子1(NHE1)表达。训练的结果是,Na + / K + 泵α2亚型表达仅在三角肌中升高,而上调( P α 1和β 1亚基的em> 0.05),磷质素(FXYD1),NHE1和超氧化物歧化酶1的表达仅发生在股外侧肌中。 HIS后三角肌中MCT4和SOD2的表达增加( P 0.05),SOC后,外侧外侧肌的MCT4和SOD2表达相似。总之,手臂肌肉表现出较低的基础ROS,La -,K + 处理能力,但Na + 依赖的H + < / sup>挤压能力比腿部肌肉发达。训练引起的离子传输和抗氧化蛋白变化在肌肉群之间明显不同。

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