Rigby S E, Nugent J H, O'Malley P J
Department of Biology, University College London, U.K.
Biochemistry. 1994 Aug 23;33(33):10043-50. doi: 10.1021/bi00199a031.
Electron nuclear double resonance (ENDOR) and special triple (ST) resonance spectroscopies have been used to study the cation radicals of the primary donor, P680, and two secondary donor chlorophylls (Chl) in photosystem 2 (PS2). Two different preparations were employed, Tris-washed PS2 membranes and PS2 reaction centers (D1-D2-I-Cytb559 complex). One secondary donor Chl a cation radical, Chl1.+, was generated in the Tris-washed preparation, while the P680.+ radical cation and a further Chl a cation radical, Chl2.+, were produced in the reaction center preparation. The ENDOR spectrum of the primary donor radical cation of photosystem 1 (P700.+) is also presented for comparison. Hyperfine coupling constants for methyl groups have been measured for all three PS2 radical species and assigned by comparison with previously published spectra of Chl a radicals in vitro. Electron spin densities were calculated from these hyperfine couplings. Comparison of ENDOR spectral features with those of Chla.+ in vitro indicates similar values for Chl1.+ and Chl2.+ radicals but an apparent reduction in unpaired electron spin density for P680.+. It has been proposed from the more detailed studies of purple bacterial reaction centers that such a reduction in spin density can be interpreted as a delocalization over two Chl a molecules. Our calculations therefore suggest that P680.+ is a weakly coupled chlorophyll pair with 82% of the unpaired electron spin located on one chlorophyll of the pair at 15 K. Environmental or geometrical changes to the chlorin ring structure to give a novel monomeric primary donor are also possible.(ABSTRACT TRUNCATED AT 250 WORDS)
电子-核双共振(ENDOR)和特殊三重(ST)共振光谱已被用于研究光系统2(PS2)中初级供体P680以及两个次级供体叶绿素(Chl)的阳离子自由基。使用了两种不同的制剂,即经Tris洗涤的PS2膜和PS2反应中心(D1-D2-I-Cytb559复合物)。在经Tris洗涤的制剂中产生了一种次级供体叶绿素a阳离子自由基Chl1.+,而在反应中心制剂中产生了P680.+自由基阳离子和另一种叶绿素a阳离子自由基Chl2.+。还给出了光系统1初级供体自由基阳离子(P700.+)的ENDOR光谱用于比较。已测量了所有三种PS2自由基物种甲基的超精细偶合常数,并通过与先前发表的体外叶绿素a自由基光谱进行比较来进行归属。根据这些超精细偶合计算了电子自旋密度。将ENDOR光谱特征与体外Chla.+的光谱特征进行比较,结果表明Chl1.+和Chl2.+自由基的值相似,但P680.+的未成对电子自旋密度明显降低。从对紫色细菌反应中心更详细的研究中提出,这种自旋密度的降低可以解释为在两个叶绿素a分子上的离域。因此,我们的计算表明P680.+是一个弱耦合的叶绿素对,在15 K时,82%的未成对电子自旋位于该对中一个叶绿素上。二氢卟吩环结构的环境或几何变化以产生一种新型单体初级供体也是可能的。(摘要截短于250字)