Lockau W
Eur J Biochem. 1979 Mar;94(2):365-73. doi: 10.1111/j.1432-1033.1979.tb12902.x.
The reversible inhibition, by low osmolarity, of the rate of electron transport through photosystem 1 has been investigated in spinach chloroplasts. By use of different electron donor systems to photosystem 1, inhibitors of plastocyanin, and by measurement of the extent of photooxidation of the photosystem 1 reaction center P700, the inhibition site has been localized on the electron donor side of this photosystem. From comparison of the influence of impermeant and permeant salts on the electron transport rate, and from the effect of ionic strength on the oxidation of externally added plastocyanin by subchloroplast preparations, it is concluded that low ionic strength within the thylakoids inhibits the photooxidation of endogenous plastocyanin by P700. The results are taken as evidence that plastocyanin is oxidized by P700 at the internal (lumen) side of the osmotic barrier in the thylakoid membrane.
在菠菜叶绿体中,研究了低渗透压对通过光系统1的电子传递速率的可逆抑制作用。通过使用不同的光系统1电子供体系统、质体蓝素抑制剂,并测量光系统1反应中心P700的光氧化程度,确定了抑制位点位于该光系统的电子供体侧。通过比较非渗透性盐和渗透性盐对电子传递速率的影响,以及离子强度对亚叶绿体制剂对外加质体蓝素氧化的影响,得出结论:类囊体内部的低离子强度抑制了P700对内源性质体蓝素的光氧化。这些结果证明,质体蓝素在类囊体膜渗透屏障的内部(腔)侧被P700氧化。