Buck Institute for Research on Aging, 8001 Redwood Bld., Novato, CA 94945, United States.
Neurochem Int. 2017 Oct;109:5-12. doi: 10.1016/j.neuint.2016.12.018. Epub 2017 Jan 3.
The transport of calcium across the inner mitochondrial membrane plays a key role in neuronal physiology and pathology. The kinetic responses of the uniporter and efflux pathways are such that a cytosolic free calcium 'set-point' can be established - above which there is net calcium accumulation into the matrix that is reversed when plasma membrane transport lowers cytosolic calcium. Pathological activation of N-methyl-d-aspartate receptor mediated sodium and calcium entry into the neuron, as occurs in stroke and spreading depression, places severe demands on both the ATP-generating and calcium loading capacities of the neuronal mitochondria as the set-point is exceeded. Experiments that led to the concept of the set-point are reviewed.
钙在内质网上的运输在神经元的生理和病理中起着关键作用。单向转运蛋白和外排途径的动力学反应使得可以建立细胞质游离钙“设定点”-超过该点,净钙积累进入基质,当质膜转运降低细胞质钙时,该设定点被逆转。N-甲基-D-天冬氨酸受体介导的钠和钙进入神经元的病理性激活,如在中风和扩散性抑制中发生的那样,对神经元线粒体的 ATP 生成和钙加载能力提出了极高的要求,因为超过了设定点。审查了导致设定点概念的实验。