The folding of a metallopeptide
We have applied solid-phase synthesis methods for the construction of tris(bipyridyl) peptidic ligands that coordinate Fe( ii ) ions with high affinity and fold into stable mononuclear metallopeptides. The main factors influencing the folding pathway and chiral control of the peptidic ligands around...
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Veröffentlicht in: | Dalton transactions : an international journal of inorganic chemistry 2016-01, Vol.45 (3), p.881-885 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | We have applied solid-phase synthesis methods for the construction of tris(bipyridyl) peptidic ligands that coordinate Fe(
ii
) ions with high affinity and fold into stable mononuclear metallopeptides. The main factors influencing the folding pathway and chiral control of the peptidic ligands around the metal ions have been studied both by experimental techniques (CD, UV-vis and NMR) and molecular modeling tools. Amongst the numerous molecular variables that have been studied, this study clearly illustrates how the chirality of a given set of aminoacids (proline in this case) of the peptide dictates the chirality of the metal center of the resulting metallopeptide. Moreover, the relatively hydrophobic peptidic models used in this work show that the most stable structures present reduced solvent contacts and, in counterpart, stabilize the
cis
configuration of the proline residues.
We have studied the main factors influencing the folding pathway and chiral control of a family of tris(bipyridyl) peptidic ligands in the presence of Fe(
ii
) ions both by experimental techniques and molecular modeling tools. |
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ISSN: | 1477-9226 1477-9234 |
DOI: | 10.1039/c5dt02797g |