Literature DB >> 3427038

Tyrosine and carboxyl protonation changes in the bacteriorhodopsin photocycle. 1. M412 and L550 intermediates.

P Roepe1, P L Ahl, S K Das Gupta, J Herzfeld, K J Rothschild.   

Abstract

The role of tyrosines in the bacteriorhodopsin (bR) photocycle has been investigated by using Fourier transform infrared (FTIR) and UV difference spectroscopies. Tyrosine contributions to the BR570----M412 FTIR difference spectra recorded at several temperatures and pH's were identified by isotopically labelling tyrosine residues in bacteriorhodopsin. The frequencies and deuterium/hydrogen exchange sensitivities of these peaks and of peaks in spectra of model compounds in several environments suggest that at least two different tyrosine groups participate in the bR photocycle during the formation of M412. One group undergoes a tyrosinate----tyrosine conversion during the BR570----K630 transition. A second tyrosine group deprotonates between L550 and M412. Low-temperature UV difference spectra in the 220--350-nm region of both purple membrane suspensions and rehydrated films support these conclusions. The UV spectra also indicate perturbation(s) of one or more tryptophan group(s). Several carboxyl groups appear to undergo a series of protonation changes between BR570 and M412, as indicated by infrared absorption changes in the 1770--1720-cm-1 region. These results are consistent with the existence of a proton wire in bacteriorhodopsin that involves both tyrosine and carboxyl groups.

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Year:  1987        PMID: 3427038     DOI: 10.1021/bi00395a020

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  18 in total

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Authors:  K J Rothschild
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3.  Solving complex photocycle kinetics. Theory and direct method.

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6.  Fourier transform infrared spectroscopic analysis of altered reaction pathways in site-directed mutants: the D212N mutant of bacteriorhodopsin expressed in Halobacterium halobium.

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Authors:  K J Rothschild; Y W He; D Gray; P D Roepe; S L Pelletier; R S Brown; J Herzfeld
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8.  Proton transfers in a channelrhodopsin-1 studied by Fourier transform infrared (FTIR) difference spectroscopy and site-directed mutagenesis.

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Authors:  Erica C Saint Clair; John I Ogren; Sergey Mamaev; Joel M Kralj; Kenneth J Rothschild
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10.  Structural characterization of the L-to-M transition of the bacteriorhodopsin photocycle.

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Journal:  Biophys J       Date:  1998-09       Impact factor: 4.033

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