Quinone-dependent proton transfer pathways in the photosynthetic cytochrome b6f complex

被引:72
作者
Hasan, S. Saif [1 ]
Yamashita, Eiki [2 ]
Baniulis, Danas [3 ]
Cramer, William A. [1 ]
机构
[1] Purdue Univ, Dept Biol Sci, W Lafayette, IN 47907 USA
[2] Osaka Univ, Inst Prot Res, Osaka 5650871, Japan
[3] Lithuanian Res Ctr Agr & Forestry, Inst Hort, LT-54333 Babtai, Lithuania
基金
美国国家卫生研究院;
关键词
membrane protein; transmembrance electrochemical gradient; respiration; BC(1) COMPLEX; UBIQUINOL OXIDATION; RESPIRATORY-CHAIN; ELECTRON-TRANSFER; C-OXIDASE; HEME; SITE; MECHANISM; INHIBITORS; RESOLUTION;
D O I
10.1073/pnas.1222248110
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
As much as two-thirds of the proton gradient used for transmembrane free energy storage in oxygenic photosynthesis is generated by the cytochrome b(6)f complex. The proton uptake pathway from the electrochemically negative (n) aqueous phase to the n-side quinone binding site of the complex, and a probable route for proton exit to the positive phase resulting from quinol oxidation, are defined in a 2.70-angstrom crystal structure and in structures with quinone analog inhibitors at 3.07 angstrom (tridecyl-stigmatellin) and 3.25-angstrom (2-nonyl-4-hydroxyquinoline N-oxide) resolution. The simplest n-side proton pathway extends from the aqueous phase via Asp20 and Arg207 (cytochrome 66 subunit) to quinone bound axially to heme c(n). On the positive side, the heme-proximal Glu78 (subunit IV), which accepts protons from plastosemiquinone, defines a route for H+ transfer to the aqueous phase. These pathways provide a structure-based description of the quinone-mediated proton transfer responsible for generation of the transmembrane electrochemical potential gradient in oxygenic photosynthesis.
引用
收藏
页码:4297 / 4302
页数:6
相关论文
共 52 条
[1]   PHENIX: a comprehensive Python']Python-based system for macromolecular structure solution [J].
Adams, Paul D. ;
Afonine, Pavel V. ;
Bunkoczi, Gabor ;
Chen, Vincent B. ;
Davis, Ian W. ;
Echols, Nathaniel ;
Headd, Jeffrey J. ;
Hung, Li-Wei ;
Kapral, Gary J. ;
Grosse-Kunstleve, Ralf W. ;
McCoy, Airlie J. ;
Moriarty, Nigel W. ;
Oeffner, Robert ;
Read, Randy J. ;
Richardson, David C. ;
Richardson, Jane S. ;
Terwilliger, Thomas C. ;
Zwart, Peter H. .
ACTA CRYSTALLOGRAPHICA SECTION D-STRUCTURAL BIOLOGY, 2010, 66 :213-221
[2]   Spectral and redox characterization of the heme ci of the cytochrome b6f complex [J].
Alric, J ;
Pierre, Y ;
Picot, D ;
Lavergne, J ;
Rappaport, F .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2005, 102 (44) :15860-15865
[3]   Structure-Function, Stability, and Chemical Modification of the Cyanobacterial Cytochrome b6f Complex from Nostoc sp PCC 7120 [J].
Baniulis, Danas ;
Yamashita, Eiki ;
Whitelegge, Julian P. ;
Zatsman, Anna I. ;
Hendrich, Michael P. ;
Hasan, S. Saif ;
Ryan, Christopher M. ;
Cramer, William A. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2009, 284 (15) :9861-9869
[4]  
Cramer W.A., 2008, Photosynthetic Protein Complexes: A Structural Approach, P155, DOI DOI 10.1002/9783527623464.CH7
[5]   Transmembrane traffic in the cytochrome b6f complex [J].
Cramer, William A. ;
Zhang, Huamin ;
Yan, Jiusheng ;
Kurisu, Genji ;
Smith, Janet L. .
ANNUAL REVIEW OF BIOCHEMISTRY, 2006, 75 :769-790
[6]   The Q cycle of cytochrome bc complexes: A structure perspective [J].
Cramer, William A. ;
Hasan, S. Saif ;
Yamashita, Eiki .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS, 2011, 1807 (07) :788-802
[7]   Mechanism of ubiquinol oxidation by the bc1 complex:: Different domains of the quinol binding pocket and their role in the mechanism and binding of inhibitors [J].
Crofts, AR ;
Barquera, B ;
Gennis, RB ;
Kuras, R ;
Guergova-Kuras, M ;
Berry, EA .
BIOCHEMISTRY, 1999, 38 (48) :15807-15826
[8]   Pathways for proton release during ubihydroquinone oxidation by the bc1 complex [J].
Crofts, AR ;
Hong, SJ ;
Ugulava, N ;
Barquera, B ;
Gennis, R ;
Guergova-Kuras, M ;
Berry, EA .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (18) :10021-10026
[9]   STRUCTURE OF THE PROTEIN SUBUNITS IN THE PHOTOSYNTHETIC REACTION CENTER OF RHODOPSEUDOMONAS-VIRIDIS AT 3A RESOLUTION [J].
DEISENHOFER, J ;
EPP, O ;
MIKI, K ;
HUBER, R ;
MICHEL, H .
NATURE, 1985, 318 (6047) :618-624
[10]   STRUCTURE OF THE PHOTOSYNTHETIC REACTION-CENTER FROM RHODOBACTER-SPHAEROIDES AT 2.65-ANGSTROM RESOLUTION - COFACTORS AND PROTEIN-COFACTOR INTERACTIONS [J].
ERMLER, U ;
FRITZSCH, G ;
BUCHANAN, SK ;
MICHEL, H .
STRUCTURE, 1994, 2 (10) :925-936