Rational, computer-enabled peptide drug design: principles, methods, applications and future directions
Peptides provide promising templates for developing drugs to occupy a middle space between small molecules and antibodies and for targeting 'undruggable' intracellular protein-protein interactions. Importantly, rational or in cerebro design, especially when coupled with validated in silico...
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Veröffentlicht in: | Future medicinal chemistry 2015-01, Vol.7 (16), p.2173-2193 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Peptides provide promising templates for developing drugs to occupy a middle space between small molecules and antibodies and for targeting 'undruggable' intracellular protein-protein interactions. Importantly, rational or in cerebro design, especially when coupled with validated in silico tools, can be used to efficiently explore chemical space and identify islands of 'drug-like' peptides to satisfy diverse drug discovery program objectives. Here, we consider the underlying principles of and recent advances in rational, computer-enabled peptide drug design. In particular, we consider the impact of basic physicochemical properties, potency and ADME/Tox opportunities and challenges, and recently developed computational tools for enabling rational peptide drug design. Key principles and practices are spotlighted by recent case studies. We close with a hypothetical future case study. |
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ISSN: | 1756-8919 1756-8927 |
DOI: | 10.4155/fmc.15.142 |