Rosen D, Barr R, Crane F L
Biochim Biophys Acta. 1975 Oct 10;408(1):35-46. doi: 10.1016/0005-2728(75)90156-5.
The effect of such ionic redox agents as ferrocyanide and several vanadium compounds was determined on photosynthetic reactions of spinach chloroplasts. It was found that: 1. Vanadyl sulfate like ferrocyanide in moderately high concentrations (0.03 M) donates electrons to Photosystem II. 2. Decavanadate in the presence of 2,5-dibromothymoquinone accepts electrons in Photosystem II. 3. In the absence of a block between the two photosystems, decavanadate accepts electrons in Photosystem I in the vicinity of plastocyanin or beyond. 4. Vanadite and ferrocyanide in high concentrations (0.32 M) donate electrons to Photosystem I. 5. On the basis of chelator inhibition and polyoxyethylene sorbitan monolaureate treatment, the vanadite oxidation site is located near plastocyanin while the ferrocyanide site is between plastocyanin and P-700.
研究了亚铁氰化物和几种钒化合物等离子氧化还原试剂对菠菜叶绿体光合作用反应的影响。结果发现:1. 硫酸氧钒在中等高浓度(0.03 M)时,如同亚铁氰化物一样,能向光系统II提供电子。2. 在2,5-二溴百里醌存在的情况下,十钒酸盐在光系统II中接受电子。3. 在两个光系统之间不存在阻断的情况下,十钒酸盐在质体蓝素附近或更远处的光系统I中接受电子。4. 高浓度(0.32 M)的钒酸盐和亚铁氰化物能向光系统I提供电子。5. 根据螯合剂抑制和聚氧乙烯山梨糖醇酐单月桂酸酯处理结果,钒酸盐的氧化位点位于质体蓝素附近,而亚铁氰化物的位点则在质体蓝素和P-700之间。