Shomer N H, Mickelson J R, Louis C F
Department of Veterinary PathoBiology, University of Minnesota, St. Paul 55108.
Biophys J. 1994 Aug;67(2):641-6. doi: 10.1016/S0006-3495(94)80524-7.
The Arg615 to Cys615 mutation of the sarcoplasmic reticulum (SR) Ca2+ release channel of malignant hyperthermia susceptible (MHS) pigs results in a decreased sensitivity of the channel to inhibitory Ca2+ concentrations. To investigate whether this mutation also affects the ion selectivity filter of the channel, the monovalent cation conductances and ion permeability ratios of single Ca2+ release channels incorporated into planar lipid bilayers were compared. Monovalent cation conductances in symmetrical solutions were: Li+, 183 pS +/- 3 (n = 21); Na+, 474 pS +/- 6 (n = 29); K+, 771 pS +/- 7 (n = 29); Rb+, 502 pS +/- 10 (n = 22); and Cs+, 527 pS +/- 5 (n = 16). The single-channel conductances of MHS and normal Ca2+ release channel were not significantly different for any of the monovalent cations tested. Permeability ratios measured under biionic conditions had the permeability sequence Ca2+ >> Li+ > Na+ > K+ > or Rb+ > Cs+, with no significant difference noted between MHS and normal channels. This systematic examination of the conduction properties of the pig skeletal muscle Ca2+ release channel indicated a higher Ca2+ selectivity (PCa2+:Pk+ approximately 15.5) than the sixfold Ca2+ selectivity previously reported for rabbit skeletal (Smith et al., 1988) or sheep cardiac muscle (Tinker et al., 1992) Ca2+ release channels. These results also indicate that although Ca2+ regulation of Ca2+ release channel activity is altered, the Arg615 to Cys615 mutation of the porcine Ca2+ release channel does not affect the conductance or ion selectivity properties of the channel.
恶性高热易感(MHS)猪的肌浆网(SR)Ca2+释放通道中从精氨酸615到半胱氨酸615的突变导致该通道对抑制性Ca2+浓度的敏感性降低。为了研究这种突变是否也会影响通道的离子选择性过滤器,比较了整合到平面脂质双分子层中的单个Ca2+释放通道的单价阳离子电导和离子渗透率。对称溶液中的单价阳离子电导为:Li+,183 pS±3(n = 21);Na+,474 pS±6(n = 29);K+,771 pS±7(n = 29);Rb+,502 pS±10(n = 22);Cs+,527 pS±5(n = 16)。对于所测试的任何单价阳离子,MHS和正常Ca2+释放通道的单通道电导均无显著差异。在双离子条件下测量的渗透率顺序为Ca2+ >> Li+ > Na+ > K+ > 或Rb+ > Cs+,MHS通道和正常通道之间未观察到显著差异。对猪骨骼肌Ca2+释放通道传导特性的系统研究表明,其Ca2+选择性(PCa2+:Pk+约为15.5)高于先前报道的兔骨骼肌(Smith等人,1988年)或绵羊心肌(Tinker等人,1992年)Ca2+释放通道的六倍Ca2+选择性。这些结果还表明,尽管Ca2+对Ca2+释放通道活性的调节发生了改变,但猪Ca2+释放通道从精氨酸615到半胱氨酸615的突变并不影响通道的电导或离子选择性特性。