Sonnleitner A, Conti A, Bertocchini F, Schindler H, Sorrentino V
Institute for Biophysics, University of Linz, Austria.
EMBO J. 1998 May 15;17(10):2790-8. doi: 10.1093/emboj/17.10.2790.
Single-channel analysis of sarcoplasmic reticulum vesicles prepared from diaphragm muscle, which contains both RyR1 and RyR3 isoforms, revealed the presence of two functionally distinct ryanodine receptor calcium release channels. In addition to channels with properties typical of RyR1 channels, a second population of ryanodine-sensitive channels with properties distinct from those of RyR1 channels was observed. The novel channels displayed close-to-zero open-probability at nanomolar Ca2+ concentrations in the presence of 1 mM ATP, but were shifted to the open conformation by increasing Ca2+ to micromolar levels and were not inhibited at higher Ca2+ concentrations. These novel channels were sensitive to the stimulatory effects of cyclic adenosine 5'-diphosphoribose (cADPR). Detection of this second population of RyR channels in lipid bilayers was always associated with the presence of the RyR3 isoform in muscle preparations used for single-channel measurements and was abrogated by the knockout of the RyR3 gene in mice. Based on the above, we associated the novel population of channels with the RyR3 isoform of Ca2+ release channels. The functional properties of the RyR3 channels are in agreement with a potential qualitative contribution of this channel to Ca2+ release in skeletal muscle and in other tissues.
对从膈肌制备的肌浆网囊泡进行单通道分析,该膈肌同时含有RyR1和RyR3两种亚型,结果显示存在两种功能不同的兰尼碱受体钙释放通道。除了具有典型RyR1通道特性的通道外,还观察到另一群对兰尼碱敏感的通道,其特性与RyR1通道不同。在1 mM ATP存在的情况下,这些新通道在纳摩尔浓度的Ca2+下开放概率接近零,但随着Ca2+浓度增加到微摩尔水平,通道转变为开放构象,且在较高Ca2+浓度下不受抑制。这些新通道对环腺苷5'-二磷酸核糖(cADPR)的刺激作用敏感。在用于单通道测量的肌肉制剂中,在脂质双层中检测到的这第二群RyR通道总是与RyR3亚型的存在相关,并且在小鼠中RyR3基因敲除后消失。基于上述情况,我们将这群新通道与Ca2+释放通道的RyR3亚型联系起来。RyR3通道的功能特性与该通道对骨骼肌和其他组织中Ca2+释放的潜在定性贡献一致。