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Biomimetic macrocyclic receptors for carboxylate anion recognition based on C-linked peptidocalix[4]arenes.


ABSTRACT: Two neutral macrobicyclic anion receptors 4 and 6, containing a calix[4]arene in the cone conformation, two l-alanine units, and a 2,6-diacylpyridine or a phthaloyl bridge, are described. The x-ray crystal structure of the acetone complexes of the pyridine containing macrocycle 6 shows the four amide NH groups to be in close proximity to the chiral pocket delimited by the pyridine and one aromatic nucleus of the calix[4]arene. This conformation is also the most stable in acetone-d6 solution, as proven by one- and two-dimensional NMR spectral measurements. Electrospray ionization-MS and (1)H NMR experiments reveal that the two ligands strongly bind carboxylate anions in acetone solution. H-bonding interactions between the carboxylate anions and the amide NH groups, together with pi/pi stacking, are invoked to explain the efficiency and the selectivity of these anion receptors.

SUBMITTER: Sansone F 

PROVIDER: S-EPMC122680 | biostudies-literature | 2002 Apr

REPOSITORIES: biostudies-literature

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Biomimetic macrocyclic receptors for carboxylate anion recognition based on C-linked peptidocalix[4]arenes.

Sansone Francesco F   Baldini Laura L   Casnati Alessandro A   Lazzarotto Marcio M   Ugozzoli Franco F   Ungaro Rocco R  

Proceedings of the National Academy of Sciences of the United States of America 20020401 8


Two neutral macrobicyclic anion receptors 4 and 6, containing a calix[4]arene in the cone conformation, two l-alanine units, and a 2,6-diacylpyridine or a phthaloyl bridge, are described. The x-ray crystal structure of the acetone complexes of the pyridine containing macrocycle 6 shows the four amide NH groups to be in close proximity to the chiral pocket delimited by the pyridine and one aromatic nucleus of the calix[4]arene. This conformation is also the most stable in acetone-d6 solution, as  ...[more]

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