Sierralta J, Fill M, Suárez-Isla B A
Departamento de Fisiología & Biofísica, Facultad de Medicina, Universidad de Chile, Casilla 70005, Santiago 7, Chile.
J Biol Chem. 1996 Jul 19;271(29):17028-34. doi: 10.1074/jbc.271.29.17028.
The functional heterogeneity of the ryanodine receptor (RyR) channels in avian cerebellum was defined. Heavy endoplasmic reticulum microsomes had significant levels of ryanodine and inositol 1,4,5-trisphosphate binding. Scatchard analysis and kinetic studies indicated the existence of at least two distinct ryanodine binding sites. Ryanodine binding was calcium-dependent but was not significantly enhanced by caffeine. Incorporation of microsomes into planar lipid bilayers revealed ion channels with pharmacological features (calcium, magnesium, ATP, and caffeine sensitivity) similar to the RyR channels found in mammalian striated muscle. Despite a wide range of unitary conductances (220-500 picosiemens, symmetrical cesium methanesulfonate), ryanodine locked both channels into a characteristic slow gating subconductance state, positively identifying them as RyR channels. Two populations of avian RyR channels were functionally distinguished by single channel calcium sensitivity. One population was defined by a bell-shaped calcium sensitivity analogous to the skeletal muscle RyR isoform (type I). The calcium sensitivity of the second RyR population was sigmoidal and analogous to the cardiac muscle RyR isoform (type II). These data show that there are at least two functionally distinct RyR channel populations in avian cerebellum. This leads to the possibility that these functionally distinct RyR channels are involved in different intracellular calcium signaling pathways.
确定了禽小脑兰尼碱受体(RyR)通道的功能异质性。粗面内质网微粒体具有显著水平的兰尼碱和肌醇1,4,5-三磷酸结合。Scatchard分析和动力学研究表明存在至少两个不同的兰尼碱结合位点。兰尼碱结合依赖于钙,但咖啡因对其没有显著增强作用。将微粒体整合到平面脂质双分子层中发现了具有与哺乳动物横纹肌中发现的RyR通道相似药理学特征(对钙、镁、ATP和咖啡因敏感)的离子通道。尽管单位电导范围很广(220 - 500皮西门子,对称甲磺酸铯),但兰尼碱将两个通道锁定在一个特征性的缓慢门控亚电导状态,从而明确将它们鉴定为RyR通道。通过单通道钙敏感性在功能上区分了两类禽RyR通道。一类通道的钙敏感性呈钟形,类似于骨骼肌RyR亚型(I型)。第二类RyR通道的钙敏感性呈S形,类似于心肌RyR亚型(II型)。这些数据表明禽小脑中至少存在两个功能不同的RyR通道群体。这使得这些功能不同的RyR通道可能参与不同的细胞内钙信号传导途径。