Budd S L, Nicholls D G
Department of Biochemistry, University of Dundee, Scotland.
J Neurochem. 1996 Jan;66(1):403-11. doi: 10.1046/j.1471-4159.1996.66010403.x.
The ability of mitochondrial Ca2+ transport to limit the elevation in free cytoplasmic Ca2+ concentration in neurones following an imposed Ca2+ load is reexamined. Cultured cerebellar granule cells were monitored by digital fura-2 imaging. Following KCl depolarization, addition of the protonophore carbonylcyanide m-chlorophenylhydrazone (CCCP) to depolarize mitochondria released a pool of Ca2+ into the cytoplasm in both somata and neurites. No CCCP-releasable pool was found in nondepolarized cells. Although the KCl-evoked somatic and neurite Ca2+ concentration elevations were enhanced when CCCP was present during KCl depolarization, this was associated with a collapsed ATP/ADP ratio. In the presence of the ATP synthase inhibitor oligomycin, glycolysis maintained high ATP/ADP ratios for at least 10 min. The further addition of the mitochondrial complex I inhibitor rotenone led to a collapse of the mitochondrial membrane potential, monitored by rhodamine-123, but had no effect on ATP/ADP ratios. In the presence of rotenone/oligomycin, no CCCP-releasable pool was found subsequent to KCl depolarization, consistent with the abolition of mitochondrial Ca2+ transport; however, paradoxically the KCl-evoked Ca2+ elevation is decreased. It is concluded that the CCCP-induced increase in cytoplasmic Ca2+ response to KCl is due to inhibition of nonmitochondrial ATP-dependent transport and that mitochondrial Ca2+ transport enhances entry of Ca2+, perhaps by removing the cation from cytoplasmic sites responsible for feedback inhibition of voltage-activated Ca2+ channel activity.
重新审视了线粒体Ca2+转运在施加Ca2+负荷后限制神经元胞质游离Ca2+浓度升高的能力。通过数字fura-2成像监测培养的小脑颗粒细胞。KCl去极化后,添加质子载体羰基氰化物间氯苯腙(CCCP)使线粒体去极化,释放出一批Ca2+进入胞体和神经突的细胞质中。在未去极化的细胞中未发现CCCP可释放池。尽管在KCl去极化期间存在CCCP时,KCl诱发的胞体和神经突Ca2+浓度升高增强,但这与ATP/ADP比值的崩溃有关。在存在ATP合酶抑制剂寡霉素的情况下,糖酵解至少维持10分钟的高ATP/ADP比值。进一步添加线粒体复合物I抑制剂鱼藤酮导致线粒体膜电位崩溃,通过罗丹明-123监测,但对ATP/ADP比值没有影响。在存在鱼藤酮/寡霉素的情况下,KCl去极化后未发现CCCP可释放池,这与线粒体Ca2+转运的消除一致;然而,矛盾的是,KCl诱发的Ca2+升高却降低了。得出的结论是,CCCP诱导的对KCl的细胞质Ca2+反应增加是由于非线粒体ATP依赖性转运的抑制,并且线粒体Ca2+转运增强了Ca2+的进入,可能是通过从负责电压激活Ca2+通道活性反馈抑制的细胞质位点去除阳离子。