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在生理离子条件下通过重组型 3 InsP(3) 受体通道的单一 Ca(2+) 电流。

Unitary Ca(2+) current through recombinant type 3 InsP(3) receptor channels under physiological ionic conditions.

机构信息

Department of Physiology and 2 Department of Cell and Developmental Biology, University of Pennsylvania School of Medicine, Philadelphia, PA 19104, USA.

出版信息

J Gen Physiol. 2010 Dec;136(6):687-700. doi: 10.1085/jgp.201010513. Epub 2010 Nov 15.

Abstract

The ubiquitous inositol 1,4,5-trisphosphate (InsP(3)) receptor (InsP(3)R) channel, localized primarily in the endoplasmic reticulum (ER) membrane, releases Ca(2+) into the cytoplasm upon binding InsP(3), generating and modulating intracellular Ca(2+) signals that regulate numerous physiological processes. Together with the number of channels activated and the open probability of the active channels, the size of the unitary Ca(2+) current (i(Ca)) passing through an open InsP(3)R channel determines the amount of Ca(2+) released from the ER store, and thus the amplitude and the spatial and temporal nature of Ca(2+) signals generated in response to extracellular stimuli. Despite its significance, i(Ca) for InsP(3)R channels in physiological ionic conditions has not been directly measured. Here, we report the first measurement of i(Ca) through an InsP(3)R channel in its native membrane environment under physiological ionic conditions. Nuclear patch clamp electrophysiology with rapid perfusion solution exchanges was used to study the conductance properties of recombinant homotetrameric rat type 3 InsP(3)R channels. Within physiological ranges of free Ca(2+) concentrations in the ER lumen (Ca(2+)), free cytoplasmic [Ca(2+)] (Ca(2+)), and symmetric free [Mg(2+)] (Mg(2+)), the i(Ca)-Ca(2+) relation was linear, with no detectable dependence on Mg(2+). i(Ca) was 0.15 +/- 0.01 pA for a filled ER store with 500 microM Ca(2+). The i(Ca)-Ca(2+) relation suggests that Ca(2+) released by an InsP(3)R channel raises Ca(2+) near the open channel to approximately 13-70 microM, depending on Ca(2+). These measurements have implications for the activities of nearby InsP(3)-liganded InsP(3)R channels, and they confirm that Ca(2+) released by an open InsP(3)R channel is sufficient to activate neighboring channels at appropriate distances away, promoting Ca(2+)-induced Ca(2+) release.

摘要

普遍存在的肌醇 1,4,5-三磷酸(InsP(3))受体(InsP(3)R)通道主要位于内质网(ER)膜上,与 InsP(3)结合后将 Ca(2+)释放到细胞质中,产生和调节细胞内 Ca(2+)信号,调节许多生理过程。与激活的通道数量和活性通道的开放概率一起,通过开放的 InsP(3)R 通道的单位 Ca(2+)电流(i(Ca))的大小决定了从 ER 库中释放的 Ca(2+)的量,从而决定了响应细胞外刺激产生的 Ca(2+)信号的幅度和时空性质。尽管其意义重大,但生理离子条件下的 InsP(3)R 通道的 i(Ca)尚未直接测量。在这里,我们报告了在生理离子条件下在其天然膜环境中首次测量 InsP(3)R 通道的 i(Ca)。核片钳电生理学与快速灌注溶液交换一起用于研究重组大鼠 3 型 InsP(3)R 通道同源四聚体的电导特性。在 ER 腔中的游离 Ca(2+)浓度(Ca(2+))、细胞质中的游离 Ca(2+)浓度(Ca(2+))和对称游离 Mg(2+)浓度(Mg(2+))的生理范围内,i(Ca)-Ca(2+)关系呈线性,与 Mg(2+)无关。当 ER 库充满 500 microM Ca(2+)时,i(Ca)为 0.15 +/- 0.01 pA。i(Ca)-Ca(2+)关系表明,InsP(3)R 通道释放的 Ca(2+)将 Ca(2+)升高到接近开放通道的约 13-70 microM,具体取决于 Ca(2+)。这些测量结果对附近 InsP(3)-配体结合的 InsP(3)R 通道的活性具有影响,并且它们证实开放的 InsP(3)R 通道释放的 Ca(2+)足以激活适当距离外的相邻通道,促进 Ca(2+)-诱导的 Ca(2+)释放。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a20b/2995152/b5872a602588/JGP_201010513_RGB_Fig1.jpg

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