Keyword search (4,164 papers available)

"Kalman L" Authored Publications:

Title Authors PubMed ID
1 Photoactivation and conformational gating for manganese binding and oxidation in bacterial reaction centers Samaei A; Deshmukh SS; Protheroe C; Nyéki S; Tremblay-Ethier RA; Kálmán L; 36216075
PHYSICS
2 Tuning the redox potential of the primary electron donor in bacterial reaction centers by manganese binding and light-induced structural changes. Deshmukh SS, Kálmán L 32777306
PHYSICS
3 Bound detergent molecules in bacterial reaction centers facilitate detection of tetryl explosive. Modafferi D, Zazubovich V, Kálmán L 32632533
PHYSICS
4 Proton release due to manganese binding and oxidation in modified bacterial reaction centers. Kálmán L, Thielges MC, Williams JC, Allen JP 16201752
PHYSICS
5 Comparison of bacterial reaction centers and photosystem II. Kálmán L, Williams JC, Allen JP 18853275
PHYSICS
6 Effect of anions on the binding and oxidation of divalent manganese and iron in modified bacterial reaction centers. Tang K, Williams JC, Allen JP, Kálmán L 19383473
PHYSICS
7 Light-induced conformational changes in photosynthetic reaction centers: dielectric relaxation in the vicinity of the dimer. Deshmukh SS, Williams JC, Allen JP, Kálmán L 21141811
PHYSICS
8 Light-induced conformational changes in photosynthetic reaction centers: redox-regulated proton pathway near the dimer. Deshmukh SS, Williams JC, Allen JP, Kálmán L 21410139
PHYSICS
9 Light-induced conformational changes in photosynthetic reaction centers: impact of detergents and lipids on the electronic structure of the primary electron donor. Deshmukh SS, Akhavein H, Williams JC, Allen JP, Kalman L 21561160
PHYSICS
10 Lipid binding to the carotenoid binding site in photosynthetic reaction centers. Deshmukh SS, Tang K, Kálmán L 21894992
PHYSICS
11 The interaction of streptococcal enolase with canine plasminogen: the role of surfaces in complex formation. Balhara V, Deshmukh SS, Kálmán L, Kornblatt JA 24520380
CHEMBIOCHEM
12 Low potential manganese ions as efficient electron donors in native anoxygenic bacteria. Deshmukh SS, Protheroe C, Ivanescu MA, Lag S, Kálmán L 29355486
PHYSICS

 

Title:Effect of anions on the binding and oxidation of divalent manganese and iron in modified bacterial reaction centers.
Authors:Tang KWilliams JCAllen JPKálmán L
Link:https://www.ncbi.nlm.nih.gov/pubmed/19383473?dopt=Abstract
Publication:
Keywords:
PMID:19383473 Category:Biophys J Date Added:2019-06-04
Dept Affiliation: PHYSICS
1 Department of Physics, Concordia University, Montreal, Quebec, Canada.

Description:

Effect of anions on the binding and oxidation of divalent manganese and iron in modified bacterial reaction centers.

Biophys J. 2009 Apr 22;96(8):3295-304

Authors: Tang K, Williams JC, Allen JP, Kálmán L

Abstract

The influence of different anions on the binding and oxidation of manganous and ferrous cations was studied in four mutants of bacterial reaction centers that can bind and oxidize these metal ions. Light-minus-dark difference optical and electron paramagnetic resonance spectroscopies were applied to monitor electron transfer from bound divalent metal ions to the photo-oxidized bacteriochlorophyll dimer in the presence of five different anions. At pH 7, bicarbonate was found to be the most effective for both manganese and iron binding, with dissociation constants around 1 muM in three of the mutants. The pH dependence of the dissociation constants for manganese revealed that only bicarbonate and acetate were able to facilitate the binding and oxidation of the metal ion between pH 6 and 8 where the tight binding in their absence could not otherwise be established. The data are consistent with two molecules of bicarbonate or one molecule of acetate binding to the metal binding site. For ferrous ion, the binding and oxidation was facilitated not only by bicarbonate and acetate, but also by citrate. Electron paramagnetic resonance spectra suggest differences in the arrangement of the iron ligands in the presence of the various anions.

PMID: 19383473 [PubMed - indexed for MEDLINE]





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