A large number of pharmaceutically relevant targets have been shown to be flexible, which are collected in this article. This comprehensive list of present and historical pharmaceutical targets provides the basis for questioning the relevance of the rigid receptor hypothesis, which is commonly used during in silico drug design.The role of protein flexibility in future pharmaceutical targets is likely to be even greater than in the past. Presently under-exploited target classes, such as ion channels, nuclear hormone receptors and transporters, have functions that are inextricably bound up with their structural flexibility.This article uses illustrative examples to discuss the implications of protein flexibility in drug discovery, and highlights how it could be exploited in drug design.
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Calibrium LLC, 11711 N Meridian St, Carmel, IN 46032 USACalibrium LLC, 11711 N Meridian St, Carmel, IN 46032 USA
Liu, Fa
Mayer, John P.
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Calibrium LLC, 11711 N Meridian St, Carmel, IN 46032 USA
Indiana Univ, Dept Chem, Bloomington, IN 47405 USACalibrium LLC, 11711 N Meridian St, Carmel, IN 46032 USA
Mayer, John P.
PROTEIN LIGATION AND TOTAL SYNTHESIS I,
2015,
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Italian Natl Council Res IBB CNR, Inst Biostruct & Bioimaging, Area Ric Site & Headquarters,Via Pietro Castellino, I-80131 Naples, ItalyItalian Natl Council Res IBB CNR, Inst Biostruct & Bioimaging, Area Ric Site & Headquarters,Via Pietro Castellino, I-80131 Naples, Italy
Vicidomini, Caterina
Roviello, Giovanni N.
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Italian Natl Council Res IBB CNR, Inst Biostruct & Bioimaging, Area Ric Site & Headquarters,Via Pietro Castellino, I-80131 Naples, ItalyItalian Natl Council Res IBB CNR, Inst Biostruct & Bioimaging, Area Ric Site & Headquarters,Via Pietro Castellino, I-80131 Naples, Italy