A linkage of the pK(a)'s of asp-85 and glu-204 forms part of the reprotonation switch of bacteriorhodopsin

被引:175
作者
Richter, HT
Brown, LS
Needleman, R
Lanyi, JK
机构
[1] UNIV CALIF IRVINE,DEPT PHYSIOL & BIOPHYS,IRVINE,CA 92717
[2] WAYNE STATE UNIV,DEPT BIOCHEM,DETROIT,MI 48201
关键词
D O I
10.1021/bi952883q
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Because asp-85 is the acceptor of the retinal Schiff base proton during light-driven proton transport by bacteriorhodopsin, modulation of its pK(a) in the photocycle is to be expected, The complex titration of asp-85 in the unphotolyzed protein was suggested [Balashov, S. P., Govindjee, R., Imasheva, E. S., Misra, S., Ebrey, T. G., Feng, Y., Crouch, R. K., & Menick, D. R (1995) Biochemistry 34, 8820-8834] to reflect the dependence of this residue on the protonation state of another, unidentified group, From the pH dependencies of the rate constant for the thermal equilibration of retinal isomeric states (dark adaptation) and the deprotonation kinetics of the Schiff base during the photocycle in the E204Q and E204D mutants, we identify the residue as glu-204. The nature of its interaction with asp-85 is that at neutral pH either residue can be anionic but not both. This is consistent with our recent finding that glu-204 is the origin of the proton released to the extracellular surface upon protonation of asp-85 during the transport. We propose, therefore, that the following series of events occur in the photocycle. Protonation of asp-85 in the proton equilibrium with the Schiff base of the photoisomerized retinal results in the dissociation of glu-204 and proton release to the extracellular surface. The deprotonation of glu-204, in turn, raises the pK, of asp-85, and the equilibrium with the Schiff base shifts toward complete proton transfer. This constitutes: the first phase of the reprotonation switch because it excludes asp-85 as a donor in the reprotonation of the Schiff base that follows. The sequential structural changes of the protein that ensue, detected earlier by diffraction, are suggested to facilitate the change of the access of the Schiff base toward the cytoplasmic side as the second phase of the switch, and the lowering the pK, of asp-96, so as to make it a proton donor, as the third phase.
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页码:4054 / 4062
页数:9
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共 78 条
[1]   RED SHIFT OF THE PURPLE MEMBRANE ABSORPTION-BAND AND THE DEPROTONATION OF TYROSINE RESIDUES AT HIGH PH - ORIGIN OF THE PARALLEL PHOTOCYCLES OF TRANS-BACTERIORHODOPSIN [J].
BALASHOV, SP ;
GOVINDJEE, R ;
EBREY, TG .
BIOPHYSICAL JOURNAL, 1991, 60 (02) :475-490
[2]   THE 2 PK(A) OF ASPARTATE-85 AND CONTROL OF THERMAL-ISOMERIZATION AND PROTON RELEASE IN THE ARGININE-82 TO LYSINE MUTANT OF BACTERIORHODOPSIN [J].
BALASHOV, SP ;
GOVINDJEE, R ;
IMASHEVA, ES ;
MISRA, S ;
EBREY, TG ;
FENG, Y ;
CROUCH, RK ;
MENICK, DR .
BIOCHEMISTRY, 1995, 34 (27) :8820-8834
[3]   Titration of aspartate-85 in bacteriorhodopsin: What it says about chromophore isomerization and proton release [J].
Balashov, SP ;
Imasheva, ES ;
Govindjee, R ;
Ebrey, TG .
BIOPHYSICAL JOURNAL, 1996, 70 (01) :473-481
[4]   EFFECT OF THE ARGININE-82 TO ALANINE MUTATION IN BACTERIORHODOPSIN ON DARK-ADAPTATION, PROTON RELEASE, AND THE PHOTOCHEMICAL CYCLE [J].
BALASHOV, SP ;
GOVINDJEE, R ;
KONO, M ;
IMASHEVA, E ;
LUKASHEV, E ;
EBREY, TG ;
CROUCH, RK ;
MENICK, DR ;
FENG, Y .
BIOCHEMISTRY, 1993, 32 (39) :10331-10343
[5]   ON THE MULTIPLE CYCLES OF BACTERIORHODOPSIN AT HIGH PH [J].
BITTING, HC ;
JANG, DJ ;
ELSAYED, MA .
PHOTOCHEMISTRY AND PHOTOBIOLOGY, 1990, 51 (05) :593-598
[6]   TIME-RESOLVED FOURIER-TRANSFORM INFRARED-SPECTROSCOPY OF THE BACTERIORHODOPSIN MUTANT TYR-185-]PHE - ASP-96 REPROTONATES DURING O-FORMATION - ASP-85 AND ASP-212 DEPROTONATE DURING O-DECAY [J].
BOUSCHE, O ;
SONAR, S ;
KREBS, MP ;
KHORANA, HG ;
ROTHSCHILD, KJ .
PHOTOCHEMISTRY AND PHOTOBIOLOGY, 1992, 56 (06) :1085-1095
[7]   PROTEIN DYNAMICS IN THE BACTERIORHODOPSIN PHOTOCYCLE - SUBMILLISECOND FOURIER-TRANSFORM INFRARED-SPECTRA OF THE L-PHOTOINTERMEDIATES, M-PHOTOINTERMEDIATES, AND N-PHOTOINTERMEDIATES [J].
BRAIMAN, MS ;
BOUSCHE, O ;
ROTHSCHILD, KJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1991, 88 (06) :2388-2392
[8]   A large photolysis-induced pK(a) increase of the chromophore counterion in bacteriorhodopsin: Implications for ion transport mechanisms of retinal proteins [J].
Braiman, MS ;
Dioumaev, AK ;
Lewis, JR .
BIOPHYSICAL JOURNAL, 1996, 70 (02) :939-947
[9]   THE COMPLEX EXTRACELLULAR DOMAIN REGULATES THE DEPROTONATION AND REPROTONATION OF THE RETINAL SCHIFF-BASE DURING THE BACTERIORHODOPSIN PHOTOCYCLE [J].
BROWN, LS ;
VARO, G ;
HATANAKA, M ;
SASAKI, J ;
KANDORI, H ;
MAEDA, A ;
FRIEDMAN, N ;
SHEVES, M ;
NEEDLEMAN, R ;
LANYI, JK .
BIOCHEMISTRY, 1995, 34 (39) :12903-12911
[10]   THE PROTON TRANSFERS IN THE CYTOPLASMIC DOMAIN OF BACTERIORHODOPSIN ARE FACILITATED BY A CLUSTER OF INTERACTING RESIDUES [J].
BROWN, LS ;
YAMAZAKI, Y ;
MAEDA, A ;
SUN, L ;
NEEDLEMAN, R ;
LANYI, JK .
JOURNAL OF MOLECULAR BIOLOGY, 1994, 239 (03) :401-414