de Paula J C, Li P M, Miller A F, Wu B W, Brudvig G W
Biochemistry. 1986 Oct 21;25(21):6487-94. doi: 10.1021/bi00369a022.
Electron paramagnetic resonance (EPR) measurements were performed on photosystem II (PSII) membranes that were treated with 2 M NaCl to release the 17- and 23-kilodalton (kDa) polypeptides. By using 75 microM 3-(3,4-dichlorophenyl)-1,1-dimethylurea to limit the photosystem II samples to one stable charge separation in the temperature range of 77-273 K, we have quantitated the EPR signals of the several electron donors and acceptors of photosystem II. It was found that removal of the 17- and 23-kDa polypeptides caused low potential cytochrome b559 to become fully oxidized during the course of dark adaptation. Following illumination at 77-130 K, one chlorophyll molecule per reaction center was oxidized. Between 130 and 200 K, both a chlorophyll molecule and the S1 state were photooxidized and, together, accounted for one oxidation per reaction center. Above 200 K, the chlorophyll radical was unstable. Oxidation of the S1 state gave rise to the S2-state multiline EPR signal, which arises from the Mn site of the O2-evolving center. The yield of the S2-state multiline EPR signal in NaCl-washed PSII membranes was as high as 93% of the control, untreated PSII membranes, provided that both Ca2+ and Cl- were bound. Furthermore, the 55Mn nuclear hyperfine structure of the S2-state multiline EPR signal was unaltered upon depletion of the 17- and 23-kDa polypeptides. In NaCl-washed PSII samples where Ca2+ and/or Cl- were removed, however, the intensity of the S2-state multiline EPR signal decreased in parallel with the fraction of PSII lacking bound Ca2+ and Cl-.(ABSTRACT TRUNCATED AT 250 WORDS)
对用2 M氯化钠处理以释放17千道尔顿和23千道尔顿多肽的光系统II(PSII)膜进行了电子顺磁共振(EPR)测量。通过使用75微摩尔3-(3,4-二氯苯基)-1,1-二甲基脲将光系统II样品在77 - 273 K温度范围内限制为一个稳定的电荷分离,我们对光系统II的几种电子供体和受体的EPR信号进行了定量。发现去除17千道尔顿和23千道尔顿多肽会导致低电位细胞色素b559在暗适应过程中完全氧化。在77 - 130 K光照后,每个反应中心有一个叶绿素分子被氧化。在130至200 K之间,一个叶绿素分子和S1态都被光氧化,并且一起占每个反应中心一次氧化。高于200 K时,叶绿素自由基不稳定。S1态的氧化产生了S2态多线EPR信号,该信号源自放氧中心的锰位点。只要结合了Ca2 +和Cl -,NaCl洗涤的PSII膜中S2态多线EPR信号的产率高达对照未处理PSII膜的93%。此外,去除17千道尔顿和23千道尔顿多肽后,S2态多线EPR信号的55Mn核超精细结构未改变。然而,在去除了Ca2 +和/或Cl -的NaCl洗涤的PSII样品中,S2态多线EPR信号的强度与缺乏结合Ca2 +和Cl -的PSII部分平行下降。(摘要截断于250字)