1986
DOI: 10.1073/pnas.83.22.8580
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On the molecular mechanisms of the Schiff base deprotonation during the bacteriorhodopsin photocycle

Abstract: Using optical flash photolysis and timeresolved Raman methods, we examined intermediates formed during the photocycle of bacteriorhodopsin (bR), as well as the bR color change, as a function of pH (in the 7.0-1.5 region) and as a function of the number of bound Ca2+ ions. It is found that at a pH just below 3 or with less than two bound Ca21 per bR, the deprotonation (the L550 -_ M412) step ceases, yet the K610 and L550 analogues are still formed as in native bR. The lack of deprotonation in the photocycle of … Show more

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Cited by 46 publications
(68 citation statements)
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“…The conformation change in the purple-to-blue transition shifts retinal absorption to the red and renders the PSB incapable of deprotonation (53). If absorption energy is conceptualized as the energy required to displace the positive charge (the hole) on the PSB to carbon atoms down the chain on the retinal conjugated system, then a lowering of this energy in the blue form might weaken the coupling between the positively charged PSB and its negatively charged counterion(s).…”
Section: Resultsmentioning
confidence: 99%
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“…The conformation change in the purple-to-blue transition shifts retinal absorption to the red and renders the PSB incapable of deprotonation (53). If absorption energy is conceptualized as the energy required to displace the positive charge (the hole) on the PSB to carbon atoms down the chain on the retinal conjugated system, then a lowering of this energy in the blue form might weaken the coupling between the positively charged PSB and its negatively charged counterion(s).…”
Section: Resultsmentioning
confidence: 99%
“…Thus, coupling between surface potential (which depends on ionization states of the different surface acidic groups and, thus, the surface pH) and internal charges and dipoles of the amino acids that control the structure of the active site must be critical (38,40) in determining the transition pH and the protein-conformation changes during blueto-purple transition. Because change in color correlates faithfully with change in deprotonation of pmbR (53), this coupling must then control the protein-conformation changes leading to deprotonation of the PSB (29,40,54).…”
Section: Resultsmentioning
confidence: 99%
“…The blue form is incapable offorming the M412 intermediate (15,16) but allows isomerization of the retinal and formation of the K610 and L550…”
Section: -Br568 Msmentioning
confidence: 99%
“…intermediates (15)(16)(17). bR that is 75% delipidated (dLbR) does not change the color from purple to blue by deionization (18) but forms M412 with half the efficiency of bR (19).…”
Section: -Br568 Msmentioning
confidence: 99%
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