Hu Xiao-Fang, Liang Xin, Chen Ke-Ying, Xie Hong, Xu Yuhong, Zhu Pei-Hong, Hu Jun
Bio-X Life Science Research Center, College of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, China.
Biophys J. 2005 Sep;89(3):1692-9. doi: 10.1529/biophysj.105.065409. Epub 2005 Jun 10.
The calcium release channels/ryanodine receptors (RyRs) usually form two-dimensional regular lattices in the endoplasmic/sarcoplasmic reticulum membranes. However, the function and modulation of the interaction between neighboring RyRs are still unknown. Here, with an in vitro aqueous system, we demonstrate that the interaction between RyRs isolated from skeletal muscle (RyR1s) is modulated by their functional states by using photon correlation spectroscopy and [(3)H]ryanodine binding assay. High level of oligomerization is observed for resting closed RyR1s with nanomolar Ca(2+) in solution. Activation of RyR1s by micromolar Ca(2+) or/and millimolar AMP leads to the de-oligomerization of RyR1s. The oligomerization of RyR1s remains at high level when RyR1s are stabilized at closed state by Mg(2+). The modulation of RyR1-RyR1 interaction by the functional state is also observed under near-physiological conditions, suggesting that the interaction between arrayed RyR1s would be dynamically modulated during excitation-contraction coupling. These findings provide exciting new information to understand the function and operating mechanism of RyR arrays.
钙释放通道/雷诺丁受体(RyRs)通常在内质网/肌浆网膜中形成二维规则晶格。然而,相邻RyRs之间相互作用的功能和调节仍不清楚。在此,我们利用体外水相系统,通过光子相关光谱法和[³H]雷诺丁结合试验证明,从骨骼肌分离的RyRs(RyR1s)之间的相互作用受其功能状态的调节。在溶液中含有纳摩尔浓度Ca²⁺的情况下,静息关闭状态的RyR1s表现出高水平的寡聚化。微摩尔浓度的Ca²⁺或/和毫摩尔浓度的AMP激活RyR1s会导致RyR1s的解聚。当RyR1s被Mg²⁺稳定在关闭状态时,RyR1s的寡聚化仍处于高水平。在近生理条件下也观察到功能状态对RyR1-RyR1相互作用的调节,这表明在兴奋-收缩偶联过程中,排列的RyR1s之间的相互作用将被动态调节。这些发现为理解RyR阵列的功能和作用机制提供了令人兴奋的新信息。