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与二氯苯基二甲基脲不敏感的硅钼酸盐还原偶联的分离叶绿体中的磷酸化作用

Phosphorylation in isolated chloroplasts coupled to dichlorophenyldimethylurea-insensitive silicomolybdate reduction.

作者信息

Rosa L, Hall D O

出版信息

Biochim Biophys Acta. 1976 Oct 13;449(1):23-36. doi: 10.1016/0005-2728(76)90004-9.

Abstract
  1. The electron transport in isolated chloroplasts with silicomolybdate as electron acceptor has been reinvestigated. The silicomolybdate reduction has been directly measured as deltaA750 or indirectly as O2 evolution (in the presence or absence of ferricyanide). 2. Silicomolybdate-dependent O2 evolution is inhibited to a similar extent by 3-(3,4-dichlorophenyl) 1, 1-dimethylurea (DCMU) or dibromothymoquinone (DBMIB), indicating the existence of two different sites of silicomolybdate reduction: one before the DCMU block (i.e. at Photosystem II) and one after the DBMIB block (i.e. at Photosystem I). 3. Silicomolybdate-dependent O2 evolution is coupled to ATP synthesis with an ATP/2e- ratio of 1.0 to 1.1. The presence of ferricyanide inhibits this ATP synthesis (ATP/2e- ratio then is about 0.3). 4. Silicomolybdate-dependent O2 evolution is also coupled to ATP-synthesis in the presence of DCMU with an ATP/2e- ratio of 0.6-0.8 characteristic of Site II; in this case the electron transport itself is not affected by uncouplers or energy-transfer inhibitors. 5. The data are interpreted as a further demonstration that the water-splitting reaction is responsible for the conservation of energy at Photosystem II.
摘要
  1. 以硅钼酸盐作为电子受体,对分离的叶绿体中的电子传递进行了重新研究。硅钼酸盐还原反应已通过直接测量ΔA750或间接测量氧气释放量(在有或没有铁氰化物存在的情况下)来测定。2. 依赖硅钼酸盐的氧气释放受到3-(3,4-二氯苯基)-1,1-二甲基脲(DCMU)或二溴百里香醌(DBMIB)的类似程度的抑制,这表明存在两个不同的硅钼酸盐还原位点:一个在DCMU阻断之前(即在光系统II处),另一个在DBMIB阻断之后(即在光系统I处)。3. 依赖硅钼酸盐的氧气释放与ATP合成相偶联,ATP/2e-比率为1.0至1.1。铁氰化物的存在会抑制这种ATP合成(此时ATP/2e-比率约为0.3)。4. 在DCMU存在的情况下,依赖硅钼酸盐的氧气释放也与ATP合成相偶联,ATP/2e-比率为0.6 - 0.8,这是位点II的特征;在这种情况下,电子传递本身不受解偶联剂或能量转移抑制剂的影响。5. 这些数据被解释为进一步证明水裂解反应负责光系统II处的能量守恒。

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