Investigating the Dynamic Aspects of Drug-Protein Recognition through a Combination of MD and NMR Analyses: Implications for the Development of Protein-Protein Interaction Inhibitors
Articolo
Data di Pubblicazione:
2014
Abstract:
In this paper, we investigate the dynamic aspects of the molecular
recognition between a small molecule ligand and a flat, exposed protein
surface, representing a typical target in the development of
protein-protein interaction inhibitors. Specifically, we analyze the
complex between the protein Fibroblast Growth Factor 2 (FGF2) and a
recently discovered small molecule inhibitor, labeled sm27 for which the
binding site and the residues mainly involved in small molecule
recognition have been previously characterized. We have approached this
problem using microsecond MD simulations and NMR-based characterizations
of the dynamics of the apo and holo states of the system. Using direct
combination and cross-validation of the results of the two techniques,
we select the set of conformational states that best recapitulate the
principal dynamic and structural properties of the complex. We then use
this information to generate a multi-structure representation of the
sm27-FGF2 interaction. We propose this kind of representation and
approach as a useful tool in particular for the characterization of
systems where the mutual dynamic influence between the interacting
partners is expected to play an important role. The results presented
can also be used to generate new rules for the rational expansion of the
chemical diversity space of FGF2 inhibitors.
Tipologia CRIS:
1.1 Articolo in rivista
Elenco autori:
Meli, Massimiliano; Pagano, Katiuscia; Ragona, Laura; Colombo, Giorgio
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