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首页> 外文期刊>Histochemistry and Cell Biology >Ryanodine receptor type-1 (RyR1) expression and protein S-nitrosylation pattern in human soleus myofibres following bed rest and exercise countermeasure
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Ryanodine receptor type-1 (RyR1) expression and protein S-nitrosylation pattern in human soleus myofibres following bed rest and exercise countermeasure

机译:卧床休息和运动对策后比目鱼肌肌中Ryanodine受体1型(RyR1)的表达和蛋白S亚硝化模式

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摘要

The ryanodine receptor type-I (RyR1) is one key player of the excitation–contraction coupling (E-CC) machinery. However, RyR1 expression in human skeletal muscle disuse and plasticity changes are not well documented. We studied the expression and the functional modifications of RyR1 following prolonged bed rest (BR) without and with exercise countermeasure (Resistive Vibration Exercise, RVE). Soleus biopsies were taken from a non-trained control (BR-CTRL) and trained (BR-RVE) group (each n = 10) before and after BR. In BR-CTRL group, a fibre type-specific immunopattern of RyR1 (type-I < type-II) was documented, and RyR1 immunofluorescence intensity and protein expression together with [3H]ryanodine binding were decreased after BR. In BR-RVE group, RyR1 immunosignals were increased and fiber type specificity was no longer present. RyR1 protein expression was unchanged, whereas [3H]ryanodine binding increased after BR. Confocal and biochemical analysis confirmed subcellular co-localisation and protein–protein interaction of RyR1 with nitric oxide (NO)-synthase type-1 (NOS1). S-nitrosylation of RyR1 was increased in BR-CTRLpost only, suggesting a reduction of RyR1 open channel probability by nitrosylation mechanisms following prolonged disuse. We conclude that following extended body deconditioning in bed rest, RVE countermeasure maintained normal RyR1 expression and nitrosylation patterns required for adequate E-CC in human performance control.
机译:Ⅰ型精氨酸受体(RyR1)是激发-收缩偶联(E-CC)机制的重要参与者。但是,RyR1在人类骨骼肌废用和可塑性变化中的表达尚未得到充分记录。我们研究了长时间卧床休息(BR)后不进行运动对策(抵抗振动运动,RVE)后RyR1的表达和功能修饰。比目鱼从活检之前和之后的非训练对照组(BR-CTRL)和训练(BR-RVE)组(每个n = 10)中取出。在BR-CTRL组中,记录了RyR1的纤维类型特异性免疫模式(I型

著录项

  • 来源
    《Histochemistry and Cell Biology》 |2008年第1期|105-118|共14页
  • 作者单位

    Center of Space Medicine Berlin Neuromuscular Group Charité Universitätsmedizin Berlin Campus Benjamin Franklin Arnimallee 22 14195 Berlin Germany;

    Center of Space Medicine Berlin Neuromuscular Group Charité Universitätsmedizin Berlin Campus Benjamin Franklin Arnimallee 22 14195 Berlin Germany;

    Institute for Biophysical and Clinical Research into Human Movement Manchester Metropolitan University Hassal Rd. Alsager ST7 2QL UK;

    Center for Muscle and Bone Research Charité Universitätsmedizin Berlin Campus Benjamin Franklin Hindenburgdamm 30 12200 Berlin Germany;

    Center of Space Medicine Berlin Neuromuscular Group Charité Universitätsmedizin Berlin Campus Benjamin Franklin Arnimallee 22 14195 Berlin Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    RyR1; NOS1; Bed rest; Human skeletal muscle; Countermeasures;

    机译:RyR1;NOS1;卧床休息;人体骨骼肌;对策;

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