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Sequential forward and reverse transport of the Na + Ca 2+ exchanger generates Ca 2+ oscillations within mitochondria

机译:Na + Ca 2+交换剂的顺序正向和反向传输会在线粒体内产生Ca 2+振荡

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Mitochondrial Ca2+ homoeostasis regulates aerobic metabolism and cell survival. Ca2+ flux into mitochondria is mediated by the mitochondrial calcium uniporter (MCU) channel whereas Ca2+ export is often through an electrogenic Na+–Ca2+ exchanger. Here, we report remarkable functional versatility in mitochondrial Na+–Ca2+ exchange under conditions where mitochondria are depolarised. Following physiological stimulation of cell-surface receptors, mitochondrial Na+–Ca2+ exchange initially operates in reverse mode, transporting cytosolic Ca2+ into the matrix. As matrix Ca2+ rises, the exchanger reverts to its forward mode state, extruding Ca2+. Transitions between reverse and forward modes generate repetitive oscillations in matrix Ca2+. We further show that reverse mode Na+–Ca2+ activity is regulated by the mitochondrial fusion protein mitofusin 2. Our results demonstrate that reversible switching between transport modes of an ion exchanger molecule generates functionally relevant oscillations in the levels of the universal Ca2+ messenger within an organelle.
机译:线粒体Ca2 +稳态调节有氧代谢和细胞存活。 Ca2 +进入线粒体的通量是由线粒体钙单向转运蛋白(MCU)通道介导的,而Ca2 +的出口通常是通过电致Na + -Ca2 +交换剂进行的。在这里,我们报道了在线粒体去极化的条件下,线粒体Na + –Ca2 +交换具有非凡的功能多功能性。生理刺激细胞表面受体后,线粒体Na + –Ca2 +交换最初以反向模式进行,将胞质Ca2 +转运到基质中。随着矩阵Ca2 +的升高,交换器恢复为正向状态,从而挤出Ca2 +。反向和正向模式之间的转换会在矩阵Ca2 +中产生重复振荡。我们进一步表明,逆向模式Na + –Ca2 +的活性受线粒体融合蛋白mitofusin 2的调控。我们的结果表明,离子交换剂分子运输模式之间的可逆转换会在细胞器内通用Ca2 +信使水平上产生功能相关的振荡。

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