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Fibre type-specific change in FXYD1 phosphorylation during acute intense exercise in humans

机译:人类急性剧烈运动过程中FXYD1磷酸化的纤维类型特异性变化

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摘要

The aim of the present study was to examine fibre type-specific Na+–K+ pump subunit expression and exercise-induced alterations in phospholemman (FXYD1) phosphorylation in humans. Segments of human skeletal muscle fibres were dissected and fibre typed, and protein expression was determined by Western blotting. The protein expression of the Na+–K+ pump α2 isoform was lower in type I than in type II fibres (0.63 ± 0.04 a.u. vs. 1.00 ± 0.07 a.u., P < 0.001), while protein expression of the Na+–K+ pump α1 and β1 isoforms was not different. Protein expression of the ATP-dependent potassium channel Kir6.2 was higher in type I compared with type II fibres. In both type I (P < 0.01) and type II fibres (P < 0.001) the AB_FXYD1 signal was lower after exercise compared with rest, indicating an increase in unspecific FXYD1 phosphorylation. The FXYD1 serine 68 phosphorylation was higher (P < 0.001) after exercise compared with rest in type II fibres (1.90 ± 0.25 vs. 1.00 ± 0.08) and not changed in type I fibres. Total FXYD1 was not expressed in a fibre type-specific manner. Expression of phosphofructokinase was lower (P < 0.001) in type I than in type II fibres, whereas citrate synthase and 3-hydroxyacyl-CoA dehydrogenase were more abundant (P < 0.001) in type I fibres. In conclusion, FXYD1 phosphorylation at serine 68 increased after an acute bout of intense exercise in human type II fibres, while AB_FXYD1 signal intensity was lower in both type I and type II fibres, indicating fibre type-specific differences in FXYD1 phosphorylation on serine 63, serine 68 and threonine 69. This, together with the observation of a higher abundance of the Na+–K+ pump α2 isoform protein in type II fibres, is likely to have importance for the exercise-induced human Na+–K+ pump activity in the different fibre types.
机译:本研究的目的是研究纤维类型特异性Na + –K + 泵亚单位的表达以及运动引起的人类磷酸单质(FXYD1)磷酸化的改变。解剖人骨骼肌纤维的节段并进行纤维分型,并通过蛋白质印迹法测定蛋白质表达。 Na + –K + 泵α2亚型的蛋白表达在I型中低于II型纤维(0.63±0.04 au与1.00±0.07 au,P <0.001),而Na + –K + 泵α1和β1亚型的蛋白表达没有差异。与II型纤维相比,I型ATP依赖性钾通道Kir6.2的蛋白表达更高。在I型(P <0.01)和II型纤维(P <0.001)中,运动后的AB_FXYD1信号均比休息时低,表明非特异性FXYD1磷酸化增加。运动后的FXYD1丝氨酸68磷酸化程度高于II类纤维中的其余部分(P <0.001)(1.90±0.25与1.00±0.08),而I型纤维则没有变化。总FXYD1没有以纤维类型特定的方式表达。 I型纤维中果糖磷酸激酶的表达低于II型纤维(P <0.001),而I型纤维中的柠檬酸合酶和3-羟酰基-CoA脱氢酶则更为丰富(P <0.001)。总之,急性II型人剧烈运动后,丝氨酸68的FXYD1磷酸化增加,而I型和II型纤维的AB_FXYD1信号强度均较低,表明丝氨酸63上FXYD1磷酸化的纤维类型特异性差异,丝氨酸68和苏氨酸69。再加上观察到II型纤维中Na + –K + 泵α2亚型蛋白的丰度更高,锻炼对不同纤维类型的人Na + –K + 泵运动的重要性。

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