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Single-Channel Properties of Inositol (1,4,5)-Trisphosphate Receptor Heterologously Expressed in HEK-293 Cells

机译:HEK-293细胞异源表达的肌醇(1,4,5)-三磷酸受体的单通道特性

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摘要

The inositol (1,4,5)-trisphosphate receptor (InsP3R) mediates Ca2+ release from intracellular stores in response to generation of second messenger InsP3. InsP3R was biochemically purified and cloned, and functional properties of native InsP3-gated Ca2+ channels were extensively studied. However, further studies of InsP3R are obstructed by the lack of a convenient functional assay of expressed InsP3R activity. To establish a functional assay of recombinant InsP3R activity, transient heterologous expression of neuronal rat InsP3R cDNA (InsP3R-I, SI− SII+ splice variant) in HEK-293 cells was combined with the planar lipid bilayer reconstitution experiments. Recombinant InsP3R retained specific InsP3 binding properties (Kd = 60 nM InsP3) and were specifically recognized by anti–InsP3R-I rabbit polyclonal antibody. Density of expressed InsP3R-I was at least 20-fold above endogenous InsP3R background and only 2–3-fold lower than InsP3R density in rat cerebellar microsomes. When incorporated into planar lipid bilayers, the recombinant InsP3R formed a functional InsP3-gated Ca2+ channel with 80 pS conductance using 50 mM Ba2+ as a current carrier. Mean open time of recombinant InsP3-gated channels was 3.0 ms; closed dwell time distribution was double exponential and characterized by short (18 ms) and long (130 ms) time constants. Overall, gating and conductance properties of recombinant neuronal rat InsP3R-I were very similar to properties of native rat cerebellar InsP3R recorded in identical experimental conditions. Recombinant InsP3R also retained bell-shaped dependence on cytosolic Ca2+ concentration and allosteric modulation by ATP, similar to native cerebellar InsP3R. The following conclusions are drawn from these results. (a) Rat neuronal InsP3R-I cDNA encodes a protein that is either sufficient to produce InsP3-gated channel with functional properties identical to the properties of native rat cerebellar InsP3R, or it is able to form a functional InsP3-gated channel by forming a complex with proteins endogenously expressed in HEK-293 cells. (b) Successful functional expression of InsP3R in a heterologous expression system provides an opportunity for future detailed structure–function characterization of this vital protein.
机译:肌醇(1,4,5)-三磷酸受体(InsP3R)介导细胞内储存物中Ca2 +的释放,以响应第二信使InsP3的产生。 InsP3R进行了生化纯化和克隆,并广泛研究了天然InsP3门控的Ca2 +通道的功能特性。然而,由于缺乏对表达的InsP3R活性的方便的功能测定,阻碍了对InsP3R的进一步研究。为了建立重组InsP3R活性的功能测定,将神经元大鼠InsP3R cDNA(InsP3R-1,SI-SII +剪接变体)在HEK-293细胞中的瞬时异源表达与平面脂质双层重建实验相结合。重组InsP3R保留了特定的InsP3结合特性(Kd = 60 nM InsP3),并被抗InsP3R-1兔多克隆抗体特异性识别。在大鼠小脑微粒体中,表达的InsP3R-1的密度至少比内源InsP3R背景高20倍,仅比InsP3R密度低2-3倍。当掺入平面脂质双层中时,重组InsP3R使用50 mM Ba2 +作为载流子,形成了具有80 pS电导的功能性InsP3门控Ca2 +通道。重组InsP3门控通道的平均开放时间为3.0 ms;闭合停留时间分布是双指数的,具有短(18 ms)和长(130 ms)时间常数的特征。总体而言,重组神经元大鼠InsP3R-1的门控和电导特性与在相同实验条件下记录的天然大鼠小脑InsP3R的特性非常相似。与天然小脑InsP3R相似,重组InsP3R还保留了对细胞质Ca2 +浓度的钟形依赖性以及ATP的变构调节作用。从这些结果得出以下结论。 (a)大鼠神经元InsP3R-I cDNA编码的蛋白质足以产生具有与天然大鼠小脑InsP3R相同的功能特性的InsP3门控通道,或者能够通过形成一个蛋白来形成功能性InsP3门控通道与在HEK-293细胞中内源表达的蛋白质复合。 (b)InsP3R在异源表达系统中的成功功能性表达为该重要蛋白的未来详细结构-功能表征提供了机会。

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