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An electron paramagnetic resonance investigation of the electron transfer reactions in the chlorophyll d containing photosystem I of Acaryochloris marina
Authors:Santabarbara Stefano  Chen Min  Larkum Anthony W D  Evans Michael C W
Institution:Department of Biology, University College London, Gower Street, London WC1E 6BT, UK. s.santabarbara@qmul.ac.uk
Abstract:Electron paramagnetic resonance (EPR) spectroscopy reveals functional and structural similarities between the reaction centres of the chlorophyll d-binding photosystem I (PS I) and chlorophyll a-binding PS I. Continuous wave EPR spectrometry at 12K identifies iron-sulphur centres as terminal electron acceptors of chlorophyll d-binding PS I. A transient light-induced electron spin echo (ESE) signal indicates the presence of a quinone as the secondary electron acceptor (Q) between P(740)(+) and the iron-sulphur centres. The distance between P(740)(+) and Q(-) was estimated within point-dipole approximation as 25.23+/-0.05A, by the analysis of the electron spin echo envelope modulation.
Keywords:Chl d(a)  Chlorophyll d(a)  EPR  electron paramagnetic resonance  ESE  electron spin echo  ESEEM  electron spin echo envelope modulation  OOP  out-of-phase  PS I  photosystem I  _method=retrieve&  _eid=1-s2  0-S0014579307002700&  _mathId=si5  gif&  _pii=S0014579307002700&  _issn=00145793&  _acct=C000051805&  _version=1&  _userid=1154080&  md5=9885f18d0ff5ceee96c705f5e88370ab')" style="cursor:pointer  View the MathML source" alt="Click to view the MathML source" title="Click to view the MathML source">View the MathML sourceels-cdn  com/content/image/1-s2  0-S0014579307002700-si5  " target="_blank">gif">  PS I  Primary donor (cation)  Q  a quinone secondary electron acceptor  SFT  sine Fourier transform
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