Department of Plant Physiology, Institute of Plant Biology, University of Wrocław, Wrocław, Poland.
Physiol Plant. 2013 Feb;147(2):207-17. doi: 10.1111/j.1399-3054.2012.01655.x. Epub 2012 Jul 4.
The effect of Cd and Cu on the tonoplast proton pumps, V-ATPase (EC 3.6.3.14) and V-PPase (EC 3.6.1.1) was investigated in cucumber roots subjected to 10 µM metals for 3 and 6 days. Both hydrolytic and transporting activities of V-ATPase as well as V-PPase increased under copper stress. In contrast, all activities examined were inhibited after the exposure of plants to cadmium. Cd and Cu changed the efficiency of coupling between proton transport and ATP hydrolysis whereas H(+) /PP(i) stoichiometry was not modified. Pre-incubation of control tonoplast vesicles with copper caused the stimulation of V-ATPase as well as V-PPase, indicating direct activation by Cu ions. Pre-treatment with cadmium had no significant effect on the activities of both enzymes. The gene expression and western blot analyses showed that observed modifications in enzyme activities were not related to the changes in the transcript levels of genes encoding V-ATPase subunit A and c, and V-PPase or in amounts of enzyme proteins. Moreover, the addition of reduced or oxidized glutathione (GSH and GSSG) to the reaction medium containing tonoplast vesicles isolated from stressed roots did not change the activity level of either enzyme when compared with the controls, suggesting that heavy metal-induced modifications are not simple reversible redox modulations.
研究了 10 μM 金属对黄瓜根系液泡膜质子泵 V-ATPase(EC 3.6.3.14)和 V-PPase(EC 3.6.1.1)的影响,分别在铜胁迫下处理 3 天和 6 天。铜胁迫下 V-ATPase 的水解和转运活性均增加,而镉暴露后所有活性均受到抑制。Cd 和 Cu 改变了质子运输和 ATP 水解之间的偶联效率,而 H(+) /PP(i) 计量比没有改变。与对照相比,用铜预先孵育控制的液泡膜小泡会刺激 V-ATPase 和 V-PPase,表明 Cu 离子的直接激活。用镉预处理对两种酶的活性没有显著影响。基因表达和 Western blot 分析表明,观察到的酶活性变化与编码 V-ATPase 亚基 A 和 c、V-PPase 的基因转录水平的变化或酶蛋白的含量无关。此外,与对照相比,向包含从胁迫根系分离的液泡膜小泡的反应介质中添加还原型或氧化型谷胱甘肽(GSH 和 GSSG)不会改变任一酶的活性水平,表明重金属诱导的修饰不是简单的可逆氧化还原调节。