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Published on: February 7, 2017
Chiral dipeptide mimics possessing a fluoroolefin moiety: a relevant tool for conformational and medicinal studies
Samuel Couve-Bonnaire1, Dominique Cahard, Xavier Pannecoucke
1UMR CNRS 6014, ECOFH, IRCOF, INSA de Rouen, 1 rue Tesniere, F-76131, Mont-Saint-Aignan, France.
Abstract:
The replacement of the amide bond in a peptide backbone is a promising strategy in peptidomimetic drug research. Over the various amide bond surrogates, the fluoroolefin moiety has been successfully developed as an effective mimic. Today, fluorine-containing compounds account for a large proportion of new active molecules in life sciences. The synthesis of fluoroolefin peptide mimics is not a trivial task and innovative approaches often need to be addressed, in particular for the stereocontrol of the double bond configuration and the chiral centres adjacent to the fluoroalkene. These fluorinated peptidomimetics have been synthesised and evaluated as metabolically stable and/or conformationally constrained analogs of enzyme inhibitors, and as tools for probing the function, structure, and binding process of receptors.
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Chiral objects exhibit a sense of handedness when they interact with another chiral object. For example, our left foot can only fit in the left shoe and not in the right shoe. Achiral objects — objects that have...

