Literature DB >> 11920439

Photomodulation of conformational states. III. Water-soluble bis-cysteinyl-peptides with (4-aminomethyl) phenylazobenzoic acid as backbone constituent.

Christian Renner1, Raymond Behrendt, Nicola Heim, Luis Moroder.   

Abstract

In previous studies we have shown that light-induced cis/trans isomerization of the azobenzene moiety in cyclo-[Ala-Cys-Ala-Thr-Cys-Asp-Gly-Phe-AMPB] [AMPB: (4-aminomethyl)phenylazobenzoic acid] leads both in the monocyclic and in the oxidized bicyclic form to markedly differentiated conformational states in DMSO, a fact that lends itself for photomodulation of the redox potential of such bis-cysteinyl-peptides. For this purpose water-soluble systems are required, and this was achieved by replacing three residues outside the Cys-Ala-Thr-Cys active-site motif of thioredoxin reductase with lysines. The resulting cyclo-[Lys-Cys-Ala-Thr-Cys-Asp-Lys-Lys-AMPB] fully retains its photoresponsive properties in water as well assessed by uv and CD measurements. Paralleling results of the previously investigated azobenzene-containing cyclic peptides, the trans --> cis isomerization of the water-soluble monocyclic and oxidized bicyclic peptide is accompanied by a marked transition from a well-defined conformation to an ensemble of possible conformations. However, the conformational preferences are very dissimilar from those of the DMSO-soluble peptides. In fact, hydrogen bonds as well as secondary structure elements were found that change in the mono- and bicyclic peptide upon irradiation. The photo switch between different turn types and hydrogen bonding networks offers the structural rational for the significantly differentiated redox potentials, but also the possibility of monitoring by femtosecond uv-vis and ir spectroscopy fast and ultra fast backbone rearrangement processes following the electronic trans --> cis isomerization. Copyright 2002 Wiley Periodicals, Inc.

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Year:  2002        PMID: 11920439     DOI: 10.1002/bip.10127

Source DB:  PubMed          Journal:  Biopolymers        ISSN: 0006-3525            Impact factor:   2.505


  2 in total

1.  A conformational two-state peptide model system containing an ultrafast but soft light switch.

Authors:  Markus Löweneck; Alexander G Milbradt; Christopher Root; Helmut Satzger; Wolfgang Zinth; Luis Moroder; Christian Renner
Journal:  Biophys J       Date:  2005-12-30       Impact factor: 4.033

2.  Ultrafast conformational dynamics in cyclic azobenzene peptides of increased flexibility.

Authors:  J Wachtveitl; S Spörlein; H Satzger; B Fonrobert; C Renner; R Behrendt; D Oesterhelt; L Moroder; W Zinth
Journal:  Biophys J       Date:  2004-04       Impact factor: 4.033

  2 in total

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