Saris N E, Niva K
Department of Medical Chemistry, University of Helsinki, Finland.
FEBS Lett. 1994 Dec 19;356(2-3):195-8. doi: 10.1016/0014-5793(94)01256-3.
Zinc ions were found to inhibit Ca2+ uptake by rat liver mitochondria driven by succinate respiration but not that by a valinomycin-induced membrane potential. Zn2+ at 1 microM or higher concentrations induced a lowering of the membrane potential under the former but not the latter conditions. It is concluded that it is the lowered membrane potential in the presence of Zn2+ that reduces the rate of respiration-driven Ca2+. Ruthenium red was found to inhibit the uptake of Zn2+ but had no influence on its action upon the membrane potential. Zn2+ did not affect the Ruthenium red-insensitive Ca2+ efflux. Ca2+ stimulated the uptake of Zn2+. It is concluded that Zn2+ may be transported by the mitochondrial calcium uniporter but that it may have access to sites required for inhibition of respiration by other routes.
研究发现,锌离子可抑制琥珀酸呼吸驱动的大鼠肝线粒体对钙离子的摄取,但不影响缬氨霉素诱导的膜电位驱动的钙离子摄取。在琥珀酸呼吸驱动的条件下,1微摩尔或更高浓度的锌离子会导致膜电位降低,而在缬氨霉素诱导的膜电位驱动条件下则不会。由此得出结论,在锌离子存在的情况下,是降低的膜电位降低了呼吸驱动的钙离子摄取速率。研究发现,钌红可抑制锌离子的摄取,但对其对膜电位的作用没有影响。锌离子不影响钌红不敏感的钙离子外流。钙离子可刺激锌离子的摄取。由此得出结论,锌离子可能通过线粒体钙单向转运体进行转运,但它可能通过其他途径进入抑制呼吸所需的位点。