ESEEM study of the phyllosemiquinone radical A(1)(center dot-) in N-14- and N-15-labeled photosystem I

被引:52
作者
Hanley, J [1 ]
Deligiannakis, Y [1 ]
MacMillan, F [1 ]
Bottin, H [1 ]
Rutherford, AW [1 ]
机构
[1] CEA SACLAY,SECT BIOENERGET,CNRS,URA 2096,DEPT BIOL CELLULAIRE & MOL,F-91191 GIF SUR YVETTE,FRANCE
关键词
D O I
10.1021/bi971360a
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The phyllosemiquinone radical of the photosystem I reaction center has been studied by electron spin echo envelope modulation (ESEEM) spectroscopy, A comparative analysis of ESEEM data of the semiquinone in N-14- and N-15-labeled PSI and numerical simulations demonstrate the existence of two protein nitrogen nuclei coupled to the semiquinone, One of the N-14 couplings is characterized by a quadrupolar coupling constant e(2)qQ/4h of 0.77 MHz, an asymmetry parameter eta of 0.18, and a hyperfine coupling tensor with an almost pure isotropic hyperfine coupling, i.e. (A(xx), k(yy), A(zz)) = (1.3, 1.3, 1.5 MHz), The second nitrogen coupling is characterized by a quadrupolar coupling constant e(2)qQ/4h of 0.45 MHz, an asymmetry parameter eta of 0.85, and a weak hyperfine coupling tensor with a dominant anisotropic part, i.e. (A(xx), A(yy), A(zz)) = (-0.2, -0.2, 1.5 MHz). On the basis of a comparison of the N-14-ESEEM data with N-14-NQR and N-14-ESEEM data from the literature, the first coupled nitrogen is assigned to the indole nitrogen of a tryptophan residue, The coupling of the second nitrogen is much weaker and therefore more difficult to assign. However, the simulated spectrum best describes an amino nitrogen of a histidine, although the amide group of an asparagine or glutamine cannot be ruled out. The possible origins of the nitrogen hyperfine coupling are discussed in terms of the amino acid residues thought to be close to the semiquinone in PSI.
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页码:11543 / 11549
页数:7
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