Keyword search (4,163 papers available)

"Williams JC" Authored Publications:

Title Authors PubMed ID
1 Proton release due to manganese binding and oxidation in modified bacterial reaction centers. Kálmán L, Thielges MC, Williams JC, Allen JP 16201752
PHYSICS
2 Comparison of bacterial reaction centers and photosystem II. Kálmán L, Williams JC, Allen JP 18853275
PHYSICS
3 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
4 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
5 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
6 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

 

Title:Light-induced conformational changes in photosynthetic reaction centers: dielectric relaxation in the vicinity of the dimer.
Authors:Deshmukh SSWilliams JCAllen JPKálmán L
Link:https://www.ncbi.nlm.nih.gov/pubmed/21141811?dopt=Abstract
Publication:
Keywords:
PMID:21141811 Category:Biochemistry Date Added:2019-06-04
Dept Affiliation: PHYSICS
1 Department of Physics, Concordia University, Montreal, Quebec H4B 1R6, Canada.

Description:

Light-induced conformational changes in photosynthetic reaction centers: dielectric relaxation in the vicinity of the dimer.

Biochemistry. 2011 Jan 25;50(3):340-8

Authors: Deshmukh SS, Williams JC, Allen JP, Kálmán L

Abstract

Conformational changes near the bacteriochlorophyll dimer induced by continuous illumination were identified in the wild type and 11 different mutants of reaction centers from Rhodobacter sphaeroides. The properties of the bacteriochlorophyll dimer, which has a different hydrogen bonding pattern with the surrounding protein in each mutant, were characterized by steady-state and transient optical spectroscopy. After illumination for 1 min, in the absence of the secondary quinone, the recovery of the charge-separated states was nearly 1 order of magnitude slower in one group of mutants including the wild type than in the mutants carrying the Leu to His mutation at the L131 position. The slower recovery was accompanied by a substantial decrease in the electrochromic absorption changes associated with the Q(y) bands of the nearby monomers during the illumination. The other set of mutants containing the Leu L131 to His substitution exhibited slightly altered electrochromic changes that decreased only half as much during the illumination as in the other family of mutants. The correlation between the recovery of the charge-separated states in the light-induced conformation and the electrochromic absorption changes suggests a dielectric relaxation of the protein that stabilizes the charge on the dimer.

PMID: 21141811 [PubMed - indexed for MEDLINE]





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