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从兔膈肌中纯化的3型兰尼碱受体(RyR3)的进一步特性研究。

Further characterization of the type 3 ryanodine receptor (RyR3) purified from rabbit diaphragm.

作者信息

Murayama T, Oba T, Katayama E, Oyamada H, Oguchi K, Kobayashi M, Otsuka K, Ogawa Y

机构信息

Department of Pharmacology, Juntendo University School of Medicine, Tokyo 113-8421, Japan.

出版信息

J Biol Chem. 1999 Jun 11;274(24):17297-308. doi: 10.1074/jbc.274.24.17297.

Abstract

We characterized type 3 ryanodine receptor (RyR3) purified from rabbit diaphragm by immunoaffinity chromatography using a specific antibody. The purified receptor was free from 12-kDa FK506-binding protein, although it retained the ability to bind 12-kDa FK506-binding protein. Negatively stained images of RyR3 show a characteristic rectangular structure that was indistinguishable from RyR1. The location of the D2 segment, which exists uniquely in the RyR1 isoform, was determined as the region around domain 9 close to the corner of the square-shaped assembly, with use of D2-directed antibody as a probe. The RyR3 homotetramer had a single class of high affinity [3H]ryanodine-binding sites with a stoichiometry of 1 mol/mol. In planar lipid bilayers, RyR3 displayed cation channel activity that was modulated by several ligands including Ca2+, Mg2+, caffeine, and ATP, which is consistent with [3H]ryanodine binding activity. RyR3 showed a slightly larger unit conductance and a longer mean open time than RyR1. Whereas RyR1 showed two classes of channel activity with distinct open probabilities (Po), RyR3 displayed a homogeneous and steeply Ca2+-dependent activity with Po approximately 1. RyR3 was more steeply affected in the channel activity by sulfhydryl-oxidizing and -reducing reagents than RyR1, suggesting that the channel activity of RyR3 may be transformed more precipitously by the redox state. This is also a likely explanation for the difference in the Ca2+ dependence of RyR3 between [3H]ryanodine binding and channel activity.

摘要

我们使用特异性抗体通过免疫亲和色谱法对从兔膈肌中纯化的3型兰尼碱受体(RyR3)进行了表征。纯化后的受体不含12 kDa FK506结合蛋白,尽管它仍保留与12 kDa FK506结合蛋白结合的能力。RyR3的负染图像显示出一种与RyR1无法区分的特征性矩形结构。利用D2定向抗体作为探针,确定了仅存在于RyR1同工型中的D2片段的位置,即靠近方形组装体角落的结构域9周围区域。RyR3同四聚体具有一类高亲和力的[3H]兰尼碱结合位点,化学计量比为1 mol/mol。在平面脂质双分子层中,RyR3表现出阳离子通道活性,该活性受到包括Ca2+、Mg2+、咖啡因和ATP在内的多种配体的调节,这与[3H]兰尼碱结合活性一致。RyR3的单位电导率略大于RyR1,平均开放时间也更长。RyR1表现出两类具有不同开放概率(Po)的通道活性,而RyR3则表现出均匀且强烈依赖Ca2+的活性,Po约为1。与RyR1相比,RyR3的通道活性受巯基氧化和还原试剂的影响更为显著,这表明RyR3的通道活性可能因氧化还原状态而更急剧地转变。这也可能是[3H]兰尼碱结合与通道活性之间RyR3对Ca2+依赖性差异的原因。

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