Ahern G P, Junankar P R, Dulhunty A F
Division of Neuroscience, John Curtin School of Medical Research, Australian National University, Canberra, Australia.
Biophys J. 1997 Jan;72(1):146-62. doi: 10.1016/S0006-3495(97)78654-5.
FKBP12 was removed from ryanodine receptors (RyRs) by incubation of rabbit skeletal muscle terminal cisternae membranes with rapamycin. The extent of FKBP12 removal was estimated by immunostaining Western blots of terminal cisternae proteins. Single FKBP12-depleted RyR channels, incorporated into planar lipid bilayers, were modulated by Ca2+, ATP, ryanodine, and ruthenium red in the cis chamber and opened frequently to the normal maximum conductance of approximately 230 pS and to substate levels of approximately 0.25, approximately 0.5, and approximately 0.75 of the maximum conductance. Substate activity was rarely seen in native RyRs. Ryanodine did not after the number of conductance levels in FKBP12-depleted channels, but, at a membrane potential of +40 mV, reduced both the maximum and the substate conductances by approximately 50%. FKBP12-stripped channels were activated by a 10-fold-lower [Ca2+] and inhibited by a 10-fold-higher [Ca2+], than RyRs from control-incubated and native terminal cisternae vesicles. The open probability (Po) of these FKBP12-deficient channels was greater than that of control channels at 0.1 microM and 1 mM cis Ca2+ but no different at 10 microM cis Ca2+, where channels showed maximal Ca2+ activation. The approximately 0.25 substate was less sensitive than the maximum conductance to inhibition by Ca2+ and was the dominant level in channels inhibited by 1 mM cis Ca2+. The results show that FKBP12 coordinates the gating of channel activity in control and ryanodine-modified RyRs.
通过用雷帕霉素孵育兔骨骼肌终池膜,从兰尼碱受体(RyRs)中去除FKBP12。通过对终池蛋白的免疫印迹进行免疫染色来估计FKBP12的去除程度。整合到平面脂质双分子层中的单个FKBP12缺失的RyR通道,在顺式腔室中受到Ca2+、ATP、兰尼碱和钌红的调节,并经常开放至正常最大电导约230 pS以及最大电导的约0.25、约0.5和约0.75的亚状态水平。在天然RyRs中很少见到亚状态活性。兰尼碱不影响FKBP12缺失通道的电导水平数量,但在+40 mV的膜电位下,使最大电导和亚状态电导均降低约50%。与来自对照孵育和天然终池囊泡的RyRs相比,FKBP12去除的通道在低10倍的[Ca2+]下被激活,在高10倍的[Ca2+]下被抑制。在0.1 microM和顺式Ca2+ 1 mM时,这些FKBP12缺陷通道的开放概率(Po)大于对照通道,但在10 microM顺式Ca2+时无差异,此时通道显示出最大的Ca2+激活。约0.25的亚状态对Ca2+抑制的敏感性低于最大电导,并且是在1 mM顺式Ca2+抑制的通道中的主要水平。结果表明,FKBP12在对照和兰尼碱修饰的RyRs中协调通道活性的门控。