Dipartimento di Biologia, Università di Milano, 20133 Milano.
Plant Physiol. 1985 Nov;79(3):734-9. doi: 10.1104/pp.79.3.734.
The rapid uptake of weak acids permeant in the uncharged form is accompanied in maize and wheat root segments by a hyperpolarization of the transmembrane electrical potential and an increase in K(+) uptake, suggesting a stimulation of the plasmalemma H(+) pump. The evaluation of weak acid-induced H(+) extrusion must take into account the alkalinization of the medium due to the rapid uptake of the uncharged form of the acid, partially masking the proton pump-mediated extrusion of H(+). The data corrected for this interference show that the lipophilic butyric acid and trimethyl acetic acid induce in maize and in wheat root segments a significant increase in ;real' H(+) extrusion, roughly matching the increase in net K(+) uptake. The presence of K(+) significantly increases the rate of uptake of the weak acid, possibly as a consequence of an alkalinization of the cytosol associated with K(+) absorption. In maize root segments, the effects of fusicoccin and those of butyric acid on both K(+) uptake and H(+) extrusion are clearly synergistic, thus suggesting distinct modes of action. These results support the view that the activity of the plasmalemma H(+) pump is regulated by the value of cytosolic pH.
非解离形式可通透的弱酸迅速吸收伴随着玉米和小麦根段跨膜电势能的超极化和 K(+)摄取的增加,提示质膜 H(+)泵被刺激。评估弱酸诱导的 H(+)外排必须考虑到由于酸的非解离形式的快速吸收导致的介质碱化,这部分掩盖了质子泵介导的 H(+)外排。对这种干扰进行校正的数据表明,亲脂性丁酸和三甲基乙酸诱导玉米和小麦根段中显著增加“真实”H(+)外排,大致与净 K(+)摄取的增加相匹配。K(+)的存在显著增加了弱酸的吸收速率,可能是由于与 K(+)吸收相关的细胞溶质碱化的结果。在玉米根段中, fusicoccin 和丁酸对 K(+)摄取和 H(+)外排的影响显然是协同的,因此表明它们的作用方式不同。这些结果支持这样一种观点,即质膜 H(+)泵的活性受到细胞溶质 pH 值的调节。