Theoretical studies of O-O bond formation in photosystem II

被引:86
作者
Siegbahn, Per E. M. [1 ]
机构
[1] Stockholm Univ, Arrhenius Lab, Dept Biochem & Biophys, SE-10691 Stockholm, Sweden
关键词
D O I
10.1021/ic7012057
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The most critical part of dioxygen evolution in photosystem II is the O-O bond formation step. In order to reach an efficient mechanism, nature uses a unique oxygen-evolving complex (OEC) having four manganese and one calcium center. Even though the structure of the OEC has become much more clear during recent years, it has still been difficult to find a transition state (TS) for O-O bond formation with a sufficiently low barrier. However, about a year ago, a quite surprising type of TS was found. With the latest X-ray ligand assignment, the local barrier for this TS is only 5.1 kcal/mol. It can be described as an attack by an oxygen radical, held by a dangling manganese, on a bridging oxo ligand in the Mn3Ca cube. In the present short Article, energy diagrams describing the entire process of dioxygen formation will be presented. An important conclusion drawn from these diagrams is that the major features of dioxygen formation remain the same irrespective of which one of the experimentally suggested structures the diagram is built on. Compared to earlier presentations of the same type, a slightly different approach has been used for setting up the diagrams. Results from a recent experimental study of the pressure dependence of oxygen release have been used to define the final energy levels. The loss of energy in the electron transfer from Tyr(z) to P-680 has also been incorporated into the diagrams. A good agreement with experimental observations is demonstrated.
引用
收藏
页码:1779 / 1786
页数:8
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共 38 条
[1]   DENSITY-FUNCTIONAL THERMOCHEMISTRY .3. THE ROLE OF EXACT EXCHANGE [J].
BECKE, AD .
JOURNAL OF CHEMICAL PHYSICS, 1993, 98 (07) :5648-5652
[2]   Theoretical study of the reduction of nitric oxide in an A-type flavoprotein [J].
Blomberg, L. Mattias ;
Blomberg, Margareta R. A. ;
Siegbahn, Per E. M. .
JOURNAL OF BIOLOGICAL INORGANIC CHEMISTRY, 2007, 12 (01) :79-89
[3]   Reduction of nitric oxide in bacterial nitric oxide reductase - a theoretical model study [J].
Blomberg, L. Mattias ;
Blomberg, Margareta R. A. ;
Siegbahn, Per E. M. .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS, 2006, 1757 (04) :240-252
[4]   A theoretical study on nitric oxide reductase activity in a ba3-type heme-copper oxidase [J].
Blomberg, LM ;
Blomberg, MRA ;
Siegbahn, PEM .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS, 2006, 1757 (01) :31-46
[5]   Quantum chemistry applied to the mechanisms of transition metal containing enzymes -: Cytochrome c oxidase, a particularly challenging case [J].
Blomberg, Margareta R. A. ;
Siegbahn, Per E. M. .
JOURNAL OF COMPUTATIONAL CHEMISTRY, 2006, 27 (12) :1373-1384
[6]   NANOSECOND REDUCTION KINETICS OF PHOTOOXIDIZED CHLOROPHYLL-ALPHA-II (P-680) IN SINGLE FLASHES AS A PROBE FOR THE ELECTRON PATHWAY, H+-RELEASE AND CHARGE ACCUMULATION IN THE O-2-EVOLVING COMPLEX [J].
BRETTEL, K ;
SCHLODDER, E ;
WITT, HT .
BIOCHIMICA ET BIOPHYSICA ACTA, 1984, 766 (02) :403-415
[7]   Evidence that the C-terminus of the D1 polypeptide of photosystem II is ligated to the manganese ion that undergoes oxidation during the S1 to S2 transition:: An isotope-edited FTIR study [J].
Chu, HA ;
Hillier, W ;
Debus, RJ .
BIOCHEMISTRY, 2004, 43 (11) :3152-3166
[8]   Detection of an intermediate of photosynthetic water oxidation [J].
Clausen, J ;
Junge, W .
NATURE, 2004, 430 (6998) :480-483
[9]   No evidence from FTIR difference spectroscopy that aspartate-170 of the D1 polypeptide ligates a manganese ion that undergoes oxidation during the S0 to S1, S1 to S2, or S2 to S3 transitions in photosystem II [J].
Debus, RJ ;
Strickler, MA ;
Walker, LM ;
Hillier, W .
BIOCHEMISTRY, 2005, 44 (05) :1367-1374
[10]   Amino acid residues involved in the coordination and assembly of the manganese cluster of photosystem II. Proton-coupled electron transport of the redox-active tyrosines and its relationship to water oxidation [J].
Diner, BA .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS, 2001, 1503 (1-2) :147-163