Dipartimento di Biologia, II Università di Roma "Tor Vergata," V. O. Raimondo, 00173 Rome, Italy.
Plant Physiol. 1992 Mar;98(3):1029-34. doi: 10.1104/pp.98.3.1029.
Fusicoccin was shown to stimulate the ATP-driven, intravesicular acidification of liposomes reconstituted with crude fusicoccin receptors and the H(+)-translocating ATPase, both solubilized from maize (Zea mays L.) plasma membrane. The present paper reports optimal conditions for dual reconstitution and fusicoccin activation as well as the biochemical characterization of the effect of fusicoccin on this system. Fusicoccin stimulation of proton pumping was dependent on pH and fusicoccin concentration. Its specificity was demonstrated by the positive effect of two cotylenins that have a high affinity for fusicoccin receptors and by the negative response to 7,9-epideacetylfusicoccin, an inactive fusicoccin derivative. Kinetic measurements at different ATP concentrations showed that fusicoccin increases the V(max) of the enzyme. Fusicoccin stimulation of maize H(+)-ATPase was also maintained when receptors from maize were substituted by those from spinach (Spinacia oleracea L.).
已证实,佛司可林可刺激用粗提佛司可林受体和 H(+)转运 ATP 酶重组的脂质体中的 ATP 驱动的囊内酸化,这两种物质均从玉米(Zea mays L.)质膜中溶解出来。本文报告了双重重组和佛司可林激活的最佳条件,以及佛司可林对该系统的生化特性的影响。佛司可林对质子泵的刺激取决于 pH 值和佛司可林浓度。其特异性通过两种对佛司可林受体具有高亲和力的 cotylenins 的积极作用以及对无活性佛司可林衍生物 7,9-epideacetylfusicoccin 的阴性反应得到证明。在不同 ATP 浓度下的动力学测量表明,佛司可林增加了酶的 V(max)。当用菠菜(Spinacia oleracea L.)的受体替代玉米的受体时,佛司可林对玉米 H(+)-ATP 酶的刺激仍然维持。