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钙离子释放通道(雷诺丁受体)的拟议成孔片段在雷诺丁相互作用中的作用。

Role of the proposed pore-forming segment of the Ca2+ release channel (ryanodine receptor) in ryanodine interaction.

作者信息

Chen S R Wayne, Li Pin, Zhao Mingcai, Li Xiaoli, Zhang Lin

机构信息

Cardiovascular Research Group, Department of Physiology and Biophysics, University of Calgary, Calgary, Alberta T2N 4N1, Canada.

出版信息

Biophys J. 2002 May;82(5):2436-47. doi: 10.1016/s0006-3495(02)75587-2.

Abstract

In earlier studies we showed that point mutations introduced into the proposed pore-forming segment, GVRAGGGIGD (amino acids 4820-4829), of the mouse cardiac ryanodine receptor reduced or abolished high affinity [3H]ryanodine binding. Here we investigate the effects of these mutations on the affinity and dissociation properties of [3H]ryanodine binding and on ryanodine modification of the ryanodine receptor channel at the single channel and whole cell levels. Scatchard analysis and dissociation studies reveal that mutation G4824A decreases the equilibrium dissociation constant (K(d)) and the dissociation rate constant (k(off)), whereas mutations G4828A and D4829A increase the K(d) and k(off) values. The effect of ryanodine on single G4828A and D4829A mutant channels is reversible on the time scale of single channel experiments, in contrast to the irreversible effect of ryanodine on single wild-type channels. Ryanodine alone is able to induce a large and sustained Ca2+ release in HEK293 cells transfected with the R4822A or G4825A mutant cDNA at the resting cytoplasmic Ca2+ but causes little or no Ca2+ release in cells transfected with the wild-type cDNA. Mutation G4826C diminishes the functional effect of ryanodine on Ca2+ release but spares caffeine-induced Ca2+ release in HEK293 cells. Co-expression of the wild-type and G4826C mutant proteins produces single channels that interact with ryanodine reversibly and display altered conductance and ryanodine response. These results are consistent with the view that the proposed pore-forming segment is a critical determinant of ryanodine interaction. A putative model of ryanodine-ryanodine receptor interaction is proposed.

摘要

在早期研究中,我们发现引入小鼠心脏雷诺丁受体假定的成孔片段GVRAGGGIGD(氨基酸4820 - 4829)中的点突变会降低或消除高亲和力[³H]雷诺丁结合。在此,我们在单通道和全细胞水平研究这些突变对[³H]雷诺丁结合的亲和力和解离特性以及对雷诺丁受体通道的雷诺丁修饰的影响。Scatchard分析和解离研究表明,突变G4824A降低了平衡解离常数(K(d))和解离速率常数(k(off)),而突变G4828A和D4829A则增加了K(d)和k(off)值。与雷诺丁对单个野生型通道的不可逆作用相反,在单通道实验的时间尺度上,雷诺丁对单个G4828A和D4829A突变通道的作用是可逆的。单独的雷诺丁能够在静息细胞质Ca²⁺条件下,在转染了R4822A或G4825A突变cDNA的HEK293细胞中诱导大量且持续的Ca²⁺释放,但在转染野生型cDNA的细胞中几乎不引起或不引起Ca²⁺释放。突变G4826C减弱了雷诺丁对Ca²⁺释放的功能作用,但在HEK293细胞中不影响咖啡因诱导的Ca²⁺释放。野生型和G4826C突变蛋白的共表达产生了与雷诺丁可逆相互作用并表现出改变的电导和雷诺丁反应的单通道。这些结果与以下观点一致,即假定的成孔片段是雷诺丁相互作用的关键决定因素。提出了一个雷诺丁 - 雷诺丁受体相互作用的假定模型。

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