Wang Y, Sze H
J Biol Chem. 1985 Sep 5;260(19):10434-43.
The native tonoplast and the mitochondrial H+-ATPase from oat roots were compared to determine whether the two enzymes have similar mechanisms. H+ pumping in low-density microsomal vesicles reflected activity from the tonoplast-type ATPase, as ATPase activity and ATP-dependent H+ pumping (quinacrine fluorescence quenching) showed similar sensitivities to inhibition by N-ethylmaleimide, N,N'-dicyclohexylcarbodiimide, 4,4'-diisothiocyano-2,2'-stilbene disulfonate, nitrate, quercetin, or 7-chloro-4-nitrobenzo-2-oxa-1,3-diazole. The tonoplast-type ATPase was stimulated by C1-,Br- greater than HCO3- whereas the mitochondrial ATPase was stimulated by HCO3- much greater than C1-,Br-. Both enzymes hydrolyzed ATP preferentially and were inhibited competitively by AMP or ADP. Apart from resistance to azide, the tonoplast-type ATPase was strikingly similar in its inhibitor sensitivities to the mitochondrial ATPase. The insensitivity to vanadate of both enzymes suggests the reaction mechanisms do not involve a covalent phosphoenzyme. Inhibition by 7-chloro-4-nitrobenzo-2-oxa-1,3-diazole and N-ethylmaleimide and protection by ATP suggests tyrosine and cysteine residues are in the catalytic site of the tonoplast ATPase. The mitochondrial ATPase was 100 times more sensitive to N,N'-dicyclohexyl-carbodiimide inhibition than the tonoplast H+-ATPase. These results suggest the tonoplast and the mitochondrial H+-ATPases share common steps in their catalytic and vectorial reaction mechanisms, yet sufficient differences exist to indicate they are two distinct ATPases.
比较了燕麦根的天然液泡膜和线粒体H⁺-ATP酶,以确定这两种酶是否具有相似的机制。低密度微粒体囊泡中的H⁺泵送反映了液泡膜型ATP酶的活性,因为ATP酶活性和ATP依赖性H⁺泵送(喹吖因荧光猝灭)对N-乙基马来酰亚胺、N,N'-二环己基碳二亚胺、4,4'-二异硫氰酸-2,2'-芪二磺酸盐、硝酸盐、槲皮素或7-氯-4-硝基苯并-2-恶唑-1,3-二唑的抑制表现出相似的敏感性。液泡膜型ATP酶受Cl⁻、Br⁻的刺激大于HCO₃⁻,而线粒体ATP酶受HCO₃⁻的刺激远大于Cl⁻、Br⁻。两种酶都优先水解ATP,并被AMP或ADP竞争性抑制。除了对叠氮化物有抗性外,液泡膜型ATP酶在抑制剂敏感性方面与线粒体ATP酶惊人地相似。两种酶对钒酸盐不敏感,这表明反应机制不涉及共价磷酸酶。7-氯-4-硝基苯并-2-恶唑-1,3-二唑和N-乙基马来酰亚胺的抑制作用以及ATP的保护作用表明酪氨酸和半胱氨酸残基位于液泡膜ATP酶的催化位点。线粒体ATP酶对N,N'-二环己基碳二亚胺抑制的敏感性比对液泡膜H⁺-ATP酶高100倍。这些结果表明,液泡膜和线粒体H⁺-ATP酶在催化和向量反应机制上有共同的步骤,但也存在足够的差异,表明它们是两种不同的ATP酶。