Molecular Dynamics Simulations Reveal the Mechanisms of Allosteric Activation of Hsp90 by Designed Ligands
Articolo
Data di Pubblicazione:
2016
Abstract:
Controlling biochemical pathways through chemically designed modulators
may provide novel opportunities to develop therapeutic drugs and
chemical tools. The underlying challenge is to design new molecular
entities able to act as allosteric chemical switches that selectively
turn on/off functions by modulating the conformational dynamics of their
target protein. We examine the origins of the stimulation of ATPase and
closure kinetics in the molecular chaperone Hsp90 by allosteric
modulators through atomistic molecular dynamics (MD) simulations and
analysis of protein-ligand interactions. In particular, we focus on the
cross-talk between allosteric ligands and protein conformations and its
effect on the dynamic properties of the chaperone's active state. We
examine the impact of different allosteric modulators on the stability,
structural and internal dynamics properties of Hsp90 closed state. A
critical aspect of this study is the development of a quantitative model
that correlates Hsp90 activation to the presence of a certain compound,
making use of information on the dynamic adaptation of protein
conformations to the presence of the ligand, which allows to capture
conformational states relevant in the activation process. We discuss the
implications of considering the conformational dialogue between
allosteric ligands and protein conformations for the design of new
functional modulators.
Tipologia CRIS:
1.1 Articolo in rivista
Elenco autori:
Vettoretti, Gerolamo; Moroni, Elisabetta; Sattin, Sara; Tao, Jiahui; Agard David, A; Bernardi, Anna; Colombo, Giorgio
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