4.6 Article

Head-to-tail interactions in tyrosine/benzophenone dyads in the ground and the excited state: NMR and laser flash photolysis studies

期刊

CHEMISTRY-A EUROPEAN JOURNAL
卷 14, 期 26, 页码 7913-7929

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.200800315

关键词

ketones; peptides; photochemistry; pi interactions; tyrosine

资金

  1. Research Training Network SULFRAD [HPRN-CT-2002-00184]
  2. COST Chemistry [CM0603]

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The formation of head-to-tail contacts in de novo synthesized benzophenone/tyrosine dyads, bpUTyr, was probed in the ground and excited triplet state by NMR techniques and laser flash photolysis, respectively. The high affinity of triplet-excited ketones towards phenols was used to trace the geometric demands for high reactivity in the excited state. A retardation effect on the rates with increasing hydrogen-bond-acceptor ability of the solvent is correlated with ground-state masking of the phenol. In a given solvent the efficiencies of the intramolecular hydrogen-atom-transfer reaction depend strongly on the properties of the linker: rate constants for the intramolecular quenching of the triplet state cover the range of 10(5) to 10(8) s(-1). The observed order of reactivity correlates to a) the probability of close contacts (from molecular-dynamics simulations) and b) the extent of the electronic overlap between the pi systems of the donor and acceptor moieties (from NMR). A broad survey of the NMR spectra in nine different solvents showed that head-to-tail interactions between the aromatic moieties of the bpUTyr dyads already exist in the ground state. Favourable aromatic-aromatic interactions in the ground state appear to correspond to high excited-state reactivity.

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