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H 泵在萝卜膜囊泡中的质膜 ATP 酶驱动下的作用: fusicoccin 的刺激作用。

H-pumping driven by the plasma membrane ATPase in membrane vesicles from radish: stimulation by fusicoccin.

机构信息

Centro di Studio del CNR per la Biologia Cellulare e Molecolare delle Piante, via G. Celoria 26, 20133 Milano, Italy.

出版信息

Plant Physiol. 1986 Sep;82(1):121-5. doi: 10.1104/pp.82.1.121.

Abstract

The effect of fusicoccin on Mg:ATP-dependent H(+)-pumping in microsomal vesicles from 24-hour-old radish (Raphanus sativus L.) seedlings was investigated by measuring the initial rate of decrease in the absorbance of the DeltapH probe acridine orange. Fusicoccin stimulated Mg:ATP-dependent H(+)-pumping when the pH of the assay medium was in the range 7.0 to 7.6 while no effect of fusicoccin was detected between pH 6.6 and pH 6.0. Both basal and fusicoccin-stimulated H(+)-pumping were completely inhibited by vanadate and almost unaffected by nitrate. Fusicoccin did not change membrane permeability to protons and fusicoccin-induced stimulation of Mg:ATP-dependent H(+)-pumping was not affected by changes in the buffer capacity of the incubation medium. Deacetylfusicoccin stimulated H(+)-pumping as much as fusicoccin, while the physiologically inactive derivative 8-oxo-9-epideacetylfusicoccin did not. Stimulation of H(+)-pumping was saturated by 100 nanomolar fusicoccin. These data indicate that fusicoccin activates the plasma membrane H(+)-ATPase by acting at the membrane level independently of the involvement of other cell components. The percent stimulation by fusicoccin was the same at all ATP concentrations tested (0.5-5.0 millimolar), thus suggesting that with fusicoccin there is an increase in V(max) of the plasma membrane H(+)-ATPase rather than a decrease in its apparent K(m) for Mg:ATP.

摘要

福司可林对 24 小时龄萝卜(Raphanus sativus L.)幼苗微粒体囊泡中 Mg:ATP 依赖性 H(+)泵的影响通过测量 Delta pH 探针吖啶橙吸光度的初始下降速率来研究。当测定介质的 pH 值在 7.0 至 7.6 范围内时,福司可林刺激 Mg:ATP 依赖性 H(+)泵,而在 pH 6.6 至 pH 6.0 之间则检测不到福司可林的作用。福司可林和基础刺激的 H(+)泵均被钒酸盐完全抑制,几乎不受硝酸盐影响。福司可林不会改变质子透过膜的通透性,福司可林诱导的 Mg:ATP 依赖性 H(+)泵的刺激不受孵育介质缓冲能力变化的影响。脱乙酰福司可林刺激 H(+)泵的作用与福司可林一样,而生理上无活性的衍生物 8-氧代-9-表脱乙酰福司可林则没有。100 纳米福司可林即可使 H(+)泵的刺激达到饱和。这些数据表明,福司可林通过在膜水平上独立于其他细胞成分的参与来激活质膜 H(+) -ATP 酶。在测试的所有 ATP 浓度(0.5-5.0 毫摩尔)下,福司可林的刺激百分比相同,因此表明福司可林增加了质膜 H(+) -ATP 酶的 V(max),而不是降低了其对 Mg:ATP 的表观 K(m)。

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