Rasi-Caldogno F, Pugliarello M C, De Michelis M I
Centro di Studio del C.N.R. per la Biologia Cellulare e Molecolare delle Piante, Università di Milano, via G. Celoria 26, 20133 Milano, Italy.
Plant Physiol. 1985 Jan;77(1):200-5. doi: 10.1104/pp.77.1.200.
Mg:ATP-dependent H(+) pumping has been studied in microsomal vesicles from 24-hour-old radish (Raphanus sativus L.) seedlings by monitoring both intravesicular acidification and the building up of an inside positive membrane potential difference (Delta psi). DeltapH was measured as the decrease of absorbance of Acridine orange and Delta psi as the shift of absorbance of bis(3-propyl-5-oxoisoxazol-4-yl)pentamethine oxonol. Both Mg:ATP-dependent Delta pH and Delta psi generation are completely inhibited by vanadate and insensitive to oligomycin; moreover, Delta pH generation is not inhibited by NO(3) (-). These findings indicate that this membrane preparation is virtually devoid of mitochondrial and tonoplast H(+)-ATPases. Both intravesicular acidification and Delta psi generation are influenced by anions: Delta pH increases and Delta psi decreases following the sequence SO(4) (2-), Cl(-), Br(-), NO(3) (-). ATP-dependent H(+) pumping strictly requires Mg(2+). It is very specific for ATP (apparent K(m) 0.76 millimolar) compared to GTP, UTP, CTP, ITP. Delta pH generation is inhibited by CuSO(4) and diethylstilbestrol as well as vanadate. Delta pH generation is specificially stimulated by K(+) (+ 80%) and to a lesser extent by Na(+) and choline (+28% and +14%, respectively). The characteristics of H(+) pumping in these microsomal vesicles closely resemble those described for the plasma membrane ATPase partially purified from several plant materials.
通过监测囊泡内酸化和膜内正电位差(Δψ)的形成,对24小时龄萝卜(Raphanus sativus L.)幼苗微粒体囊泡中Mg:ATP依赖性H⁺泵进行了研究。用吖啶橙吸光度的降低来测量ΔpH,用双(3-丙基-5-氧代异恶唑-4-基)五甲川草酚吸光度的变化来测量Δψ。钒酸盐完全抑制Mg:ATP依赖性的ΔpH和Δψ产生,且对寡霉素不敏感;此外,ΔpH产生不受NO₃⁻抑制。这些发现表明,这种膜制剂实际上不含线粒体和液泡膜H⁺-ATP酶。囊泡内酸化和Δψ产生均受阴离子影响:按照SO₄²⁻、Cl⁻、Br⁻、NO₃⁻的顺序,ΔpH升高而Δψ降低。ATP依赖性H⁺泵严格需要Mg²⁺。与GTP、UTP、CTP、ITP相比,它对ATP非常特异(表观Kₘ为0.76毫摩尔)。CuSO₄、己烯雌酚以及钒酸盐均抑制ΔpH产生。K⁺特异性刺激ΔpH产生(增加80%),Na⁺和胆碱在较小程度上刺激ΔpH产生(分别增加28%和14%)。这些微粒体囊泡中H⁺泵的特性与从几种植物材料中部分纯化的质膜ATP酶所描述的特性非常相似。