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首页> 外文期刊>Cell Calcium: The International Interdisciplinary Forum for Research on Calcium >High- and low-calcium-dependent mechanisms of mitochondrial calcium signalling.
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High- and low-calcium-dependent mechanisms of mitochondrial calcium signalling.

机译:高和低钙依赖的线粒体钙信号传导机制。

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摘要

The Ca(2+) coupling between endoplasmic reticulum (ER) and mitochondria is central to multiple cell survival and cell death mechanisms. Cytoplasmic [Ca(2+)] ([Ca(2+)](c)) spikes and oscillations produced by ER Ca(2+) release are effectively delivered to the mitochondria. Propagation of [Ca(2+)](c) signals to the mitochondria requires the passage of Ca(2+) across three membranes, namely the ER membrane, the outer mitochondrial membrane (OMM) and the inner mitochondrial membrane (IMM). Strategic positioning of the mitochondria by cytoskeletal transport and interorganellar tethers provides a means to promote the local transfer of Ca(2+) between the ER membrane and OMM. In this setting, even 100 microM [Ca(2+)] may be attained to activate the low affinity mitochondrial Ca(2+) uptake. However, a mitochondrial [Ca(2+)] rise has also been documented during submicromolar [Ca(2+)](c) elevations. Evidence has been emerging that Ca(2+) exerts allosteric control on the Ca(2+) transport sites at each membrane, providing mechanisms that may facilitate the Ca(2+) delivery to the mitochondria. Here we discuss the fundamental mechanisms of ER and mitochondrial Ca(2+) transport, particularly the control of their activity by Ca(2+) and evaluate both high- and low-[Ca(2+)]-activated mitochondrial calcium signals in the context of cell physiology.
机译:内质网(ER)和线粒体之间的Ca(2+)耦合是多种细胞存活和细胞死亡机制的核心。细胞质[Ca(2+)]([Ca(2 +)](c))尖峰和由ER Ca(2+)释放产生的振荡有效地传递到线粒体。 [Ca(2 +)](c)信号向线粒体的传播需要Ca(2+)穿过三个膜,即ER膜,外部线粒体膜(OMM)和内部线粒体膜(IMM)。通过细胞骨架运输和细胞间系绳的线粒体的战略定位提供了一种手段,以促进内质网膜和OMM之间的Ca(2+)的局部转移。在这种情况下,甚至可以达到> 100 microM [Ca(2+)]来激活低亲和性线粒体Ca(2+)摄取。但是,线粒体[Ca(2+)]上升也已被记录在亚微摩尔[Ca(2 +)](c)升高期间。有证据表明,Ca(2+)在每个膜的Ca(2+)转运位点上施加变构控制,提供了可能促进Ca(2+)传递至线粒体的机制。在这里,我们讨论了内质网和线粒体Ca(2+)转运的基本机制,特别是通过Ca(2+)控制其活性,并评估了高和低[Ca(2+)]激活的线粒体钙信号细胞生理学的背景。

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