Beck W F, Brudvig G W
Biochemistry. 1986 Oct 21;25(21):6479-86. doi: 10.1021/bi00369a021.
The binding of several primary amines to the O2-evolving center (OEC) of photosystem II (PSII) has been studied by using low-temperature electron paramagnetic resonance (EPR) spectroscopy of the S2 state. Spinach PSII membranes treated with NH4Cl at pH 7.5 produce a novel S2-state multiline EPR spectrum with a 67.5-G hyperfine line spacing when the S2 state is produced by illumination at 0 degrees C [Beck, W. F., de Paula, J. C., & Brudvig, G. W. (1986) J. Am. Chem. Soc. 108, 4018-4022]. The altered hyperfine line spacing and temperature dependence of the S2-state multiline EPR signal observed in the presence of NH4Cl are direct spectroscopic evidence for coordination of one or more NH3 molecules to the Mn site in the OEC. In contrast, the hyperfine line pattern and temperature dependence of the S2-state multiline EPR spectrum in the presence of tris(hydroxymethyl)aminomethane, 2-amino-2-ethyl-1,3-propanediol, or CH3NH2 at pH 7.5 were the same as those observed in untreated PSII membranes. We conclude that amines other than NH3 do not readily bind to the Mn site in the S2 state because of steric factors. Further, NH3 binds to an additional site on the OEC, not necessarily located on Mn, and alters the stability of the S2-state g = 4.1 EPR signal species. The effects on the intensities of the g = 4.1 and multiline EPR signals as the NH3 concentration was varied indicate that both EPR signals arise from the same paramagnetic site and that binding of NH3 to the OEC affects an equilibrium between two configurations exhibiting the different EPR signals.(ABSTRACT TRUNCATED AT 250 WORDS)
通过对S2态进行低温电子顺磁共振(EPR)光谱分析,研究了几种伯胺与光系统II(PSII)的放氧中心(OEC)的结合情况。在pH 7.5条件下用NH4Cl处理的菠菜PSII膜,当在0℃光照产生S2态时,会产生一种新型的S2态多线EPR光谱,其超精细线间距为67.5 G [Beck, W. F., de Paula, J. C., & Brudvig, G. W. (1986) J. Am. Chem. Soc. 108, 4018 - 4022]。在NH4Cl存在下观察到的S2态多线EPR信号的超精细线间距改变和温度依赖性,是一个或多个NH3分子与OEC中的Mn位点配位的直接光谱证据。相比之下,在pH 7.5条件下,存在三(羟甲基)氨基甲烷、2 - 氨基 - 2 - 乙基 - 1,3 - 丙二醇或CH3NH2时,S2态多线EPR光谱的超精细线模式和温度依赖性与未处理的PSII膜中观察到的相同。我们得出结论,由于空间因素,除NH3外的胺类不易在S2态下与Mn位点结合。此外,NH3与OEC上的另一个位点结合,该位点不一定位于Mn上,并改变了S2态g = 4.1 EPR信号物种的稳定性。随着NH3浓度变化对g = 4.1和多线EPR信号强度的影响表明,这两种EPR信号都来自同一个顺磁位点,并且NH3与OEC的结合影响了表现出不同EPR信号的两种构型之间的平衡。(摘要截短于250字)