Juel C
Department of Biology, University of Copenhagen, Copenhagen, Denmark.
Acta Physiol (Oxf). 2016 Apr;216(4):447-53. doi: 10.1111/apha.12617. Epub 2015 Nov 3.
It has been suggested that nitric oxide (NO) stimulates the Na,K-ATPase in cardiac myocytes. Therefore, the aims of this study were to investigate whether NO increases Na,K-ATPase activity in skeletal muscle and, if that is the case, to identify the underlying mechanism.
The study used isolated rat muscle, muscle homogenates and purified membranes as model systems. Na,K-ATPase activity was quantified from phosphate release due to ATP hydrolysis.
Exposure to the NO donor spermine NONOate (10 μm) increased the maximal Na,K-ATPase activity by 27% in isolated glycolytic muscles, but had no effect in oxidative muscles. Spermine NONOate increased the maximal Na,K-ATPase activity by 58% (P < 0.05) in homogenates from glycolytic muscle, but had no effect in oxidative muscle. The stimulatory effect of NONOate was not related to one specific Na,K-ATPase α-isoform. Incubation with cGMP (1 mm) increased the maximal Na,K-ATPase activity in homogenates from glycolytic muscle by 16% (P < 0.05), but had no effect on homogenates from oxidative muscle. cGMP had no effect on phospholemman phosphorylation at serine 68. Spermine NONOate had no effect in muscle membranes in which the ATPase activity was depressed by oxidized glutathione.
NO and cGMP stimulate the Na,K-ATPase in glycolytic skeletal muscle. Direct S-nitrosylation and interference with S-glutathionylation seem to be excluded. In addition, phosphorylation of phospholemman at serine 68 is not involved. Most likely, the NO/cGMP/protein kinase G signalling pathway is involved.
有研究表明一氧化氮(NO)可刺激心肌细胞中的钠钾ATP酶。因此,本研究旨在探究NO是否会增加骨骼肌中钠钾ATP酶的活性,若如此,则进一步确定其潜在机制。
本研究使用分离的大鼠肌肉、肌肉匀浆和纯化膜作为模型系统。通过ATP水解产生的磷酸盐释放量来定量钠钾ATP酶的活性。
在分离的糖酵解型肌肉中,暴露于NO供体精胺NONOate(10μm)可使钠钾ATP酶的最大活性提高27%,但对氧化型肌肉无影响。精胺NONOate可使糖酵解型肌肉匀浆中的钠钾ATP酶最大活性提高58%(P<0.05),但对氧化型肌肉匀浆无影响。NONOate的刺激作用与一种特定的钠钾ATP酶α同工型无关。与环磷酸鸟苷(cGMP,1mm)孵育可使糖酵解型肌肉匀浆中的钠钾ATP酶最大活性提高16%(P<0.05),但对氧化型肌肉匀浆无影响。cGMP对丝氨酸68位点的磷脂酰肌醇蛋白磷酸化无影响。精胺NONOate对ATP酶活性被氧化型谷胱甘肽抑制的肌膜无影响。
NO和cGMP可刺激糖酵解型骨骼肌中的钠钾ATP酶。直接的S-亚硝基化和对S-谷胱甘肽化的干扰似乎被排除。此外,丝氨酸68位点的磷脂酰肌醇蛋白磷酸化也未参与其中。最有可能涉及的是NO/cGMP/蛋白激酶G信号通路。