Schmid G H, Lehmann-Kirk U
Arch Microbiol. 1977 Dec 15;115(3):265-9. doi: 10.1007/BF00446451.
Thylakoids of Oscillatoria chalybea are able to split water. The Hill reaction of these thylakoids is sensitive to DCMU. Diphenylcarbazide can substitute for water as the electron donor to photosystem II with these fully functioning thylakoids. However, the diphenylcarbazide photooxidation is completely insensitive to 3-(3,4-dichlorophenyl)-N-N'-dimethyl urea (DCMU) at high diphenylcarbazide concentrations. In with Tris-treated Oscillatoria thylakoids the water splitting capacity is lost and diphenylcarbazide restores electron transport through photosystem II as occurs with higher plant chloroplasts. However, also these photoreactions are insensitive to DCMU. If diphenylcarbazide acts in Oscillatoria as an electron donor to photosystem II the result suggests that diphenylcarbazide feeds in its electrons behind the DCMU inhibition site. This in turn indicates that in Oscillatoria the site of inhibition of DCMU is on the donor side of photosystem II.
颤藻的类囊体能够分解水。这些类囊体的希尔反应对二氯苯基二甲基脲(DCMU)敏感。在这些功能完备的类囊体中,二苯卡巴肼可以替代水作为光系统II的电子供体。然而,在高二苯卡巴肼浓度下,二苯卡巴肼的光氧化对3-(3,4-二氯苯基)-N-N'-二甲基脲(DCMU)完全不敏感。在用Tris处理过的颤藻类囊体中,水分解能力丧失,并且二苯卡巴肼能像在高等植物叶绿体中那样恢复通过光系统II的电子传递。然而,这些光反应对DCMU也不敏感。如果二苯卡巴肼在颤藻中作为光系统II的电子供体起作用,结果表明二苯卡巴肼在DCMU抑制位点之后输入其电子。这反过来表明在颤藻中DCMU的抑制位点在光系统II的供体侧。