EFFECTS OF ARGININE-82 ON THE INTERACTIONS OF INTERNAL WATER-MOLECULES IN BACTERIORHODOPSIN

Citation
M. Hatanaka et al., EFFECTS OF ARGININE-82 ON THE INTERACTIONS OF INTERNAL WATER-MOLECULES IN BACTERIORHODOPSIN, Biochemistry, 35(20), 1996, pp. 6308-6312
Citations number
35
Categorie Soggetti
Biology
Journal title
ISSN journal
00062960
Volume
35
Issue
20
Year of publication
1996
Pages
6308 - 6312
Database
ISI
SICI code
0006-2960(1996)35:20<6308:EOAOTI>2.0.ZU;2-V
Abstract
Arg82, one of the residues near the protonated Schiff base of bacterio rhodopsin, facilitates proton release to the medium during the L-to-M reaction of the photocycle, but retards the rate of proton transfer fr om the Schiff base to Asp85. In order to understand the role of Arg82 in these processes, the structural changes upon formation of the M int ermediate were studied by Fourier transform infrared spectroscopy of t he hydrated films of Arg82 mutants at pH 9.5. The negative band at 170 0 cm(-1) in the BR-->M spectrum due to the deprotonation of Glu204 was absent when Arg82 was replaced with alanine (R82A), but present with small amplitude when residue 82 was a glutamine (R82Q), or a lysine (R 82K), with a shift to 1696 cm(-1). The O-H stretch of water at 3643 cm (-1) is shifted toward a lower frequency in R82Q, R82K, and R82A in th e unphotolyzed state. However, R82Q retains a fraction of the unshifte d band. Another O-H stretch is prominent in R82Q around 3625 cm(-1) bu t absent in R82A and probably in R82K. In parallel, R82Q retains a fra ction of the slow component of the formation of the M intermediate, wh ich is almost completely absent in R82K and R82A. These results, along with previous data for the mutants of Glu204, suggest that the guanid ium group of Arg82 influences the H-bonding of water molecules located close to Asp85 and Arg82-Glu204 regions, and the rate of proton trans fer from the Schiff base to Asp85. The amide group of Gln82 can substi tute for it but weakly.