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Depletion 'skraps' and dynamic buffering inside the cellular calcium store

机译:细胞钙存储内部的消耗“报废”和动态缓冲

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Ca2+ signals, produced by Ca2+ release from cellular stores, switch metabolic responses inside cells. In muscle, Call sparks locally exhibit the rapid start and termination of the cell-wide signal. By imaging Call inside the store using shifted excitation and emission ratioing of fluorescence, a surprising observation was made: Depletion during sparks or voltage-induced cell-wide release occurs too late, continuing to progress even after the Ca2+ release channels have closed. This finding indicates that Call is released from a '' proximate '' compartment functionally in between store lumen and cytosol. The presence of a proximate compartment also explains a paradoxical surge in intrastore Ca2+, which was recorded upon stimulation of prolonged, cell-wide Call release. An intrastore surge upon induction of Ca2+ release was first reported in subcellular store fractions, where its source was traced to the store buffer, calsequestrin. The present results update the evolving concept, largely due to N. Ikemoto and C. Kang, of calsequestrin as a dynamic store. Given the strategic location and reduction of dimensionality of Ca2+-adsorbing linear polymers of calsequestrin, they could deliver Ca2+ to the open release channels more efficiently than the luminal store solution, thus constituting the proximate compartment. When store depletion becomes widespread, the polymers would collapse to increase store [Ca2+] and sustain the concentration gradient that drives release flux.
机译:由Ca2 +从细胞储存中释放产生的Ca2 +信号转换细胞内的代谢反应。在肌肉中,呼出火花局部显示整个细胞信号的快速启动和终止。通过使用变化的激发和发射比率荧光对库内的Call进行成像,得出了令人惊讶的观察结果:火花或电压诱导的全细胞释放过程中的消耗太晚了,甚至在Ca2 +释放通道关闭后仍继续进行。这一发现表明,Call在功能上在存储腔和胞质溶胶之间从“近”隔室释放。邻近隔室的存在还解释了店内Ca2 +的反常激增,其在刺激延长的全细胞Call释放后记录。首先在亚细胞存储级分中报告了诱导Ca2 +释放的店内激增,其来源可追溯到存储缓冲液Calsequestrin。目前的结果更新了不断发展的概念,这主要归功于Calsequestrin作为动态商店的N. Ikemoto和C. Kang。考虑到钙定位蛋白的吸附钙离子的线性聚合物的战略位置并降低其尺寸,它们可以比内腔存储溶液更有效地将Ca2 +输送至开放释放通道,从而构成邻近的隔室。当存储耗尽变得普遍时,聚合物将崩溃以增加存储[Ca2 +],并维持驱动释放通量的浓度梯度。

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