Ferredoxin Reduction by Photosystem I from Synechocystis sp. PCC 6803: Toward an Understanding of the Respective Roles of Subunits PsaD and PsaE in Ferredoxin Binding
- 30 October 1998
- journal article
- research article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 37 (46) , 16233-16241
- https://doi.org/10.1021/bi981379t
Abstract
The process of ferredoxin reduction by photosystem I has been extensively investigated by flash-absorption spectroscopy in psaD and psaE deleted mutants from Synechocystis sp. PCC 6803. In both mutants, the dissociation constant for the photosystem I/ferredoxin complex at pH 8 is considerably increased as compared to the wild type: approximately 25- and 100-fold increases are found for PsaD-less and PsaE-less photosystem I, respectively. However, at high ferredoxin concentrations, submicrosecond and microsecond kinetics of electron transfer similar to that observed in the wild type are present in both mutants. The presence of these fast kinetic components indicates that the relative positions of ferredoxin and of the terminal photosystem I acceptor are not significantly disturbed by the absence of either PsaD or PsaE. The second-order rate constant of ferredoxin reduction is lowered 10- and 2-fold for PsaD-less and PsaE-less photosystem I, respectively. Assuming a simple binding equilibrium between photosystem I and ferredoxin, PsaD appears to be important for the guiding of ferredoxin to its binding site (main effect on the association rate) whereas PsaE seems to control the photosystem I/ferredoxin complex lifetime (main effect on the dissociation rate). The properties of electron transfer from photosystem I to ferredoxin were also studied at pH 5.8. In the psaE deleted mutant as in the wild type, the change of pH from 8 to 5.8 induces a 10-fold increase in affinity of ferredoxin for photosystem I. In the absence of PsaD, this pH effect is not observed, in favor of this subunit being mostly responsible for the low pH increased affinity.Keywords
This publication has 13 references indexed in Scilit:
- The PsaC subunit of photosystem I provides an essential lysine residue for fast electron transfer to ferredoxinThe EMBO Journal, 1998
- Structural Organization of the Major Subunits in Cyanobacterial Photosystem 1Journal of Biological Chemistry, 1997
- Mutational Analysis of Photosystem I PolypeptidesJournal of Biological Chemistry, 1996
- 1H AND 15N NMR Sequential Assignment, Secondary Structure, and Tertiary Fold of [2Fe-2S] Ferredoxin from Synechocystis sp. PCC 6803Biochemistry, 1995
- Evidence for the involvement of PSI-E subunit in the reduction of ferredoxin by photosystem I.The EMBO Journal, 1993
- The PSI‐E subunit of photosystem I binds ferredoxin:NADP+ oxidoreductaseFEBS Letters, 1992
- Purification and membrane topology of PSI‐D and PSI‐E, two subunits of the photosystem I reaction centerEuropean Journal of Biochemistry, 1992
- Interaction between photosystem I and ferredoxin. Identification by chemical cross-linking of the polypeptide which binds ferredoxinEuropean Journal of Biochemistry, 1987
- Evidence for a trimeric organization of the photosystem I complex from the thermophilic cyanobacteriumSynechococcussp.FEBS Letters, 1987
- Near Infra‐Red Absorption Spectra of the Chlorophyll a Cations and Triplet State in vitro and in vivoIsrael Journal of Chemistry, 1981