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Role of Ca2+/K+ ion exchange in intracellular storage and release of Ca2+.

机译:Ca2 + / K +离子交换在细胞内存储和释放Ca2 +中的作用。

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Although fluctuations in cytosolic Ca2+ concentration have a crucial role in relaying intracellular messages in the cell, the dynamics of Ca2+ storage in and release from intracellular sequestering compartments remains poorly understood. The rapid release of stored Ca2+ requires large concentration gradients that had been thought to result from low-affinity buffering of Ca2+ by the polyanionic matrices within Ca2+-sequestering organelles. However, our results here show that resting luminal free Ca2+ concentration inside the endoplasmic reticulum and in the mucin granules remains at low levels (20-35 microM). But after stimulation, the free luminal [Ca2+] increases, undergoing large oscillations, leading to corresponding oscillations of Ca2+ release to the cytosol. These remarkable dynamics of luminal [Ca2+] result from a fast and highly cooperative Ca2+/K+ ion-exchange process rather than from Ca2+ transport into the lumen. This common paradigm for Ca2+ storage and release, found in two different Ca2+-sequestering organelles, requires the functional interaction of three molecular components: a polyanionic matrix that functions as a Ca2+/K+ ion exchanger, and two Ca2+-sensitive channels, one to import K+ into the Ca2+-sequestering compartments, the other to release Ca2+ to the cytosol.
机译:尽管胞浆中Ca2 +浓度的波动在传递细胞内细胞内信息方面起着至关重要的作用,但人们对Ca2 +储存在细胞内隔离区中以及从细胞内隔离区释放的动力学了解仍然很少。储存的Ca2 +的快速释放需要较大的浓度梯度,这被认为是由Ca2 +隔离细胞器内的聚阴离子基质对Ca2 +的低亲和力缓冲造成的。但是,我们的结果显示,内质网内和粘蛋白颗粒中的腔内游离Ca2 +浓度保持较低水平(20-35 microM)。但是在刺激后,游离腔[Ca2 +]增加,经历大的振荡,导致相应的Ca2 +振荡释放到细胞质中。腔内[Ca2 +]的这些显着动力学是由于Ca2 + / K +离子交换过程快速且高度协作而引起的,而不是由于Ca2 +进入腔内的传递。在两个不同的Ca2 +隔离细胞器中发现的这种常见的Ca2 +储存和释放范式,需要三个分子成分的功能相互作用:一个充当Ca2 + / K +离子交换剂的聚阴离子基质,以及两个对Ca2 +敏感的通道,一个要导入K +进入Ca2 +分隔的区室,另一个将Ca2 +释放到细胞质中。

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