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局部麻醉药布比卡因对跨类囊体电化学质子势梯度的抑制作用。

Inhibition of the transthylakoid gradient of electrochemical proton potential by the local anesthetic dibucaine.

机构信息

Institut für Ökologische Pflanzenphysiologie, Heinrich-Heine-Universität, Universitätsstrasse 1, 1, Düsseldorf, Federal Republic of Germany.

出版信息

Planta. 1991 Mar;183(4):567-74. doi: 10.1007/BF00194278.

Abstract

The effects of the local anesthetic dibucaine on coupling between electron transport and ATP synthesis-hydrolysis by the coupling-factor complex (CF0CF1 ATPase) were investigated in thylakoid membranes from Spinacia oleracea L. cv. Monatol. Evidence is presented that inhibition of ATP synthesis was produced by a specific uncoupling mechanism which was based on dibucaine-membrane surface interactions rather than on the interaction of dibucaine with the ATPase complex. Dibucaine reduced the osmotic space of thylakoid vesicles. At low pH of the medium it stimulated ATP hydrolysis beyond the rates obtained with optimum concentrations of 'classical' uncouplers. After addition of dibucaine, there was displacement of membrane-bound Mg(2+) and strong thylakoid stacking in the presence of only low Mg(2+) concentrations. Inhibition of ATP synthesis and transmembrane pH gradient increased with medium pH. Hydrolysis of ATP by isolated CF1 and the CF0CF1 complex was only slightly affected by dibucaine. The data are discussed assuming the involvement of localized proton channels on the membrane surface in protonic coupling of electron transport and ATP synthesis. A hypothesis for the mechanisms of action of local anesthetics at the thylakoid membrane is presented.

摘要

局部麻醉药地布卡因对叶绿体膜耦联因子复合物(CF0CF1 ATP 酶)介导的电子传递与 ATP 合成-水解偶联的影响。研究了从菠菜叶绿体膜中提取的耦联因子复合物。研究结果表明,ATP 合成的抑制是由一种特殊的解偶联机制引起的,这种机制基于地布卡因与膜表面的相互作用,而不是地布卡因与 ATP 酶复合物的相互作用。地布卡因减小了类囊体囊泡的渗透空间。在介质的低 pH 值下,它刺激 ATP 水解的速率超过了最优浓度的“经典”解偶联剂所获得的速率。加入地布卡因后,在仅含有低镁浓度的情况下,膜结合的 Mg(2+) 发生位移,并且类囊体强烈堆叠。ATP 合成的抑制和跨膜 pH 梯度随介质 pH 值的增加而增加。分离的 CF1 和 CF0CF1 复合物的 ATP 水解仅受到地布卡因的轻微影响。假设局部麻醉剂在类囊体膜上涉及局部质子通道,以质子化方式偶联电子传递和 ATP 合成,本文对这些数据进行了讨论。提出了一种关于局部麻醉剂在类囊体膜上作用机制的假说。

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