Popova L G, Balnokin Y V
Laboratory of Salt Exchange and Salt Tolerance, Plant Physiology Institute, Russian Academy of Science, Moscow.
FEBS Lett. 1992 Sep 14;309(3):333-6. doi: 10.1016/0014-5793(92)80801-m.
Proton transport by the vanadate-sensitive ATPase in plasma membrane (PM) vesicles from the marine unicellular microalga Platymonas viridis was investigated. The ATP-dependent generation of delta pH across the membranes of PM vesicles was followed by the changes in the absorbance of the aminoacridine probe, Acridine orange. Na+ caused the decay of delta pH generated by the ATPase, the rate of the decay being dependent on the concentrations of Na+ added. The phenomenon was specific for Na+. Amiloride inhibited Na(+)-dependent delta pH decay. The experiments support the idea of a Na(+)-extruding mechanism (H(+)-translocating ATPase plus Na+/H+ antiporter) operating in the PM of marine alga Pl. viridis.
研究了海洋单细胞微藻绿色扁藻质膜(PM)囊泡中钒酸盐敏感型ATP酶介导的质子转运。通过氨基吖啶探针吖啶橙吸光度的变化跟踪PM囊泡膜上由ATP驱动的ΔpH的产生。Na+导致ATP酶产生的ΔpH衰减,衰减速率取决于添加的Na+浓度。该现象对Na+具有特异性。氨氯吡咪抑制Na+依赖的ΔpH衰减。这些实验支持了在绿色扁藻的质膜中存在一种Na+排出机制(H+转运ATP酶加Na+/H+反向转运体)的观点。