STARK-EFFECT IN WILD-TYPE AND HETERODIMER-CONTAINING REACTION CENTERS FROM RHODOBACTER-CAPSULATUS

被引:39
作者
DIMAGNO, TJ
BYLINA, EJ
ANGERHOFER, A
YOUVAN, DC
NORRIS, JR
机构
[1] UNIV CHICAGO,DEPT CHEM,CHICAGO,IL 60615
[2] MIT,DEPT CHEM,CAMBRIDGE,MA 02139
关键词
D O I
10.1021/bi00456a008
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 effect of an external electric field on the optical absorption spectra of wild-type Rhodobacter capsulatus and two Rb. capsulatus reaction centers that have been genetically modified through site-directed mutagenesis (HisM200 → LeuM200 and HisM200 → PheM200) was measured at 77 K. The two genetically modified reaction centers replace histidine M200, the axial ligand to the M-side bacteriochlorophyll of the special pair, with either leucine or phenylalanine. These substitutions result in the replacement of the M-side bacteriochlorophyll with bacteriopheophytin, forming a bacteriochlorophyll-bacteriopheophytin heterodimer. The magnitude of the change in dipole moment from the ground to excited state (Δμapp) and the angle δ between the Qytransition moment and the direction of Δμappwere measured for the special pair absorption band for all three reaction centers. The values for Δμappana δ obtained for wild-type Rb. capsulatus (Δμapp= 6.7 ± 1.0 D, δ = 38 ± 3°) were the same within experimental error as those of Rhodobacter sphaeroides and Rhodopseudomonas viridis. The values for Δμappand δ obtained for the red-most Stark band of both heterodimers were the same, but Δμ was substantially different from that of wild-type reaction centers (HisM200 → LeuM200, Δμapp≥ 14.1 D and δ = 33 ± 3°; HisM200 → PheM200, Δμapp≥ 15.7 D and δ = 31 ± 4°). The differences in the magnitude of Δμappand the angle δ between wild-type and heterodimer reaction centers are consistent with increased charge transfer in the heterodimer special pair. These results support calculations that place the special pair charge-transfer state higher in energy than the excited singlet state in wild-type Rb. capsulatus RCs. © 1990, American Chemical Society. All rights reserved.
引用
收藏
页码:899 / 907
页数:9
相关论文
共 36 条
[1]   STRUCTURE OF THE REACTION CENTER FROM RHODOBACTER-SPHAEROIDES R-26 - THE COFACTORS .1. [J].
ALLEN, JP ;
FEHER, G ;
YEATES, TO ;
KOMIYA, H ;
REES, DC .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1987, 84 (16) :5730-5734
[2]   REVERSIBLE PHOTOCHEMICAL HOLEBURNING IN RHODOPSEUDOMONAS-VIRIDIS REACTION CENTERS [J].
BOXER, SG ;
MIDDENDORF, TR ;
LOCKHART, DJ .
FEBS LETTERS, 1986, 200 (01) :237-241
[3]   ELECTRIC-FIELD EFFECT ON ABSORPTION-SPECTRA OF REACTION CENTERS OF RHODOBACTER-SPHAEROIDES AND RHODOPSEUDOMONAS-VIRIDIS [J].
BRAUN, HP ;
MICHELBEYERLE, ME ;
BRETON, J ;
BUCHANAN, S ;
MICHEL, H .
FEBS LETTERS, 1987, 221 (02) :221-225
[4]  
BRETON J, 1989, IN PRESS BIOCHEMISTR
[5]   INFLUENCE OF AN AMINO-ACID RESIDUE ON THE OPTICAL-PROPERTIES AND ELECTRON-TRANSFER DYNAMICS OF A PHOTOSYNTHETIC REACTION CENTER COMPLEX [J].
BYLINA, EJ ;
KIRMAIER, C ;
MCDOWELL, L ;
HOLTEN, D ;
YOUVAN, DC .
NATURE, 1988, 336 (6195) :182-184
[6]   DIRECTED MUTATIONS AFFECTING SPECTROSCOPIC AND ELECTRON-TRANSFER PROPERTIES OF THE PRIMARY DONOR IN THE PHOTOSYNTHETIC REACTION CENTER [J].
BYLINA, EJ ;
YOUVAN, DC .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1988, 85 (19) :7226-7230
[7]  
BYLINA EJ, 1987, Z NATURFORSCH C, V42, P769
[8]   STRUCTURE OF RHODOPSEUDOMONAS-SPHAEROIDES R-26 REACTION CENTER [J].
CHANG, CH ;
TIEDE, D ;
TANG, J ;
SMITH, U ;
NORRIS, J ;
SCHIFFER, M .
FEBS LETTERS, 1986, 205 (01) :82-86
[9]   SIMULATING THE DYNAMICS OF THE PRIMARY CHARGE SEPARATION PROCESS IN BACTERIAL PHOTOSYNTHESIS [J].
CREIGHTON, S ;
HWANG, JK ;
WARSHEL, A ;
PARSON, WW ;
NORRIS, J .
BIOCHEMISTRY, 1988, 27 (02) :774-781
[10]   X-RAY STRUCTURE-ANALYSIS OF A MEMBRANE-PROTEIN COMPLEX - ELECTRON-DENSITY MAP AT 3A RESOLUTION AND A MODEL OF THE CHROMOPHORES OF THE PHOTOSYNTHETIC REACTION CENTER FROM RHODOPSEUDOMONAS-VIRIDIS [J].
DEISENHOFER, J ;
EPP, O ;
MIKI, K ;
HUBER, R ;
MICHEL, H .
JOURNAL OF MOLECULAR BIOLOGY, 1984, 180 (02) :385-398