Bernardi P, Paradisi V, Pozzan T, Azzone G F
Biochemistry. 1984 Apr 10;23(8):1645-51. doi: 10.1021/bi00303a010.
The rate of uncoupler-induced Ca2+ efflux from rat liver mitochondria is increased by acetate and decreased by phosphate. This effect depends on a shift of the apparent Km, which is increased by phosphate and decreased by acetate, while the Vmax is not modified. The modification of the apparent Km by permeant anions presumably reflects changes in the concentration of matrix free Ca2+. A major part of uncoupler-induced Ca2+ efflux is sensitive to Ruthenium Red, the specific inhibitor of the Ca2+ uniporter , but an apparent insensitivity is observed when the H+ permeability is rate limiting in the process of Ca2+ efflux. The titer of uncoupler required for maximal stimulation of Ca2+ efflux increases with the Ca2+ load and may be 1-2 orders of magnitude higher than that required for maximal stimulation of respiration. On the other hand, when the uncoupler concentration is raised above 10(-6) M, the process of Ca2+ efflux becomes again Ruthenium Red insensitive. The Ruthenium Red inhibition of uncoupler-induced Ca2+ efflux is time dependent, in that the degree of inhibition exerted by low amounts of Ruthenium Red increases with the incubation time. Since the inhibition of the rate of Ca2+ influx undergoes a parallel relief, it is possible that Ruthenium Red moves from the cytosolic to the matrix side of the inner membrane. It is concluded that, in native mitochondria, uncoupler-induced Ca2+ efflux occurs via reversal of the uniport Ca2+ carrier, and not through activation of an independent pathway.
解偶联剂诱导的大鼠肝线粒体Ca2+外流速率因乙酸盐而增加,因磷酸盐而降低。这种效应取决于表观Km的变化,磷酸盐使其增加,乙酸盐使其降低,而Vmax未改变。渗透性阴离子对表观Km的改变可能反映了基质游离Ca2+浓度的变化。解偶联剂诱导的Ca2+外流的主要部分对Ca2+单向转运体的特异性抑制剂钌红敏感,但当H+通透性在Ca2+外流过程中成为限速因素时,会观察到明显的不敏感性。最大刺激Ca2+外流所需的解偶联剂浓度随Ca2+负荷增加,可能比最大刺激呼吸所需的浓度高1 - 2个数量级。另一方面,当解偶联剂浓度提高到10(-6) M以上时,Ca2+外流过程再次对钌红不敏感。钌红对解偶联剂诱导的Ca2+外流的抑制是时间依赖性的,即少量钌红产生的抑制程度随孵育时间增加。由于Ca2+内流速率的抑制也同时得到缓解,钌红可能从内膜的胞质侧转移到基质侧。结论是,在天然线粒体中,解偶联剂诱导的Ca2+外流是通过单向转运Ca2+载体的逆转发生的,而不是通过激活独立的途径。