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关于A23187诱导大鼠肝线粒体钾外流的机制

On the mechanism of A23187-induced potassium efflux in rat liver mitochondria.

作者信息

Dordick R S, Brierley G P, Garlid K D

出版信息

J Biol Chem. 1980 Nov 10;255(21):10299-305.

PMID:6776112
Abstract
  1. Rat liver mitochondria undergo a spontaneous, respiration-dependent K+ extrusion which is accelerated by citrate. This K+ efflux is electroneutral and is considered to occur on an endogenous K/H exchanger. The spontaneous efflux, but not nigericin-induced K/H exchange, is always preceded by a lag phase, suggesting that the lag phase is a characteristic property of the endogenous exchange reaction. 2. K+ extrusion induced by ionophore A23187 also has the characteristics of K/H exchange. The rate of K+ efflux is faster and the lag time is shorter when compared to endogenous K+ efflux. The effects of A23187 on the lag phase suggest that the ionophore acts by unmasking the endogenous exchanger. This conclusion is supported by the finding that K+ efflux rates reach a maximum which cannot be exceeded by increasing the dose of A23187 but is exceeded by adding nigericin. 3. Steady state perturbation studies were carried out on respiring mitochondria in which electrophoretic K+ influx was balanced by electroneutral K+ efflux. These steady states were appropriately shifted in opposite directions by additions of nigericin or valinomycin. In contrast, addition of A23187 had no effect. It is concluded that A23187 is incapable of transporting K+ in rat liver mitochondria. 4. These results are consistent with a model in which free matrix Mg2+ acts as a K/H carrier "brake." The proposed role of this carrier-brake mechanism is to provide volume homeostasis with minimal energy expenditure. According to this model, both citrate and A23187 stimulate K/H exchange by reducing Mg2+ activity within the matrix. Citrate acts by complexation of Mg2+, while A23187 acts by transporting Mg2+ out of the matrix.
摘要
  1. 大鼠肝脏线粒体经历一种自发的、依赖呼吸的钾离子外流,柠檬酸盐可加速这种外流。这种钾离子外流是电中性的,被认为发生在内源性钾氢交换体上。自发外流,而非尼日利亚菌素诱导的钾氢交换,总是先有一个延迟期,这表明延迟期是内源性交换反应的一个特征属性。2. 离子载体A23187诱导的钾离子外流也具有钾氢交换的特征。与内源性钾离子外流相比,钾离子外流速率更快,延迟时间更短。A23187对延迟期的影响表明,该离子载体通过揭示内源性交换体起作用。这一结论得到以下发现的支持:钾离子外流速率达到最大值,增加A23187的剂量无法超过该最大值,但添加尼日利亚菌素可超过该最大值。3. 对呼吸状态的线粒体进行了稳态扰动研究,其中电泳钾离子内流由电中性钾离子外流平衡。通过添加尼日利亚菌素或缬氨霉素,这些稳态向相反方向适当偏移。相比之下,添加A23187没有影响。得出的结论是,A23187在大鼠肝脏线粒体中不能转运钾离子。4. 这些结果与一个模型一致,在该模型中,游离的基质镁离子充当钾氢载体“制动器”。这种载体制动机制的 proposed 作用是以最小的能量消耗提供体积稳态。根据该模型,柠檬酸盐和A23187都通过降低基质内的镁离子活性来刺激钾氢交换。柠檬酸盐通过与镁离子络合起作用,而A23187通过将镁离子转运出基质起作用。 (注:“proposed”原文如此,可能有误,推测应为“ proposed”,翻译为“提出的” )

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