An atomistic view of Hsp70 allosteric crosstalk: from the nucleotide to the substrate binding domain and back
Articolo
Data di Pubblicazione:
2016
Abstract:
The Hsp70 is an allosterically regulated family of molecular chaperones.
They consist of two structural domains, NBD and SBD, connected by a
flexible linker. ATP hydrolysis at the NBD modulates substrate
recognition at the SBD, while peptide binding at the SBD enhances ATP
hydrolysis. In this study we apply Molecular Dynamics (MD) to elucidate
the molecular determinants underlying the allosteric communication from
the NBD to the SBD and back. We observe that local structural and
dynamical modulation can be coupled to large-scale rearrangements, and
that different combinations of ligands at NBD and SBD differently affect
the SBD domain mobility. Substituting ADP with ATP in the NBD induces
specific structural changes involving the linker and the two NBD lobes.
Also, a SBD-bound peptide drives the linker docking by increasing the
local dynamical coordination of its C-terminal end: a partially docked
DnaK structure is achieved by combining ATP in the NBD and peptide in
the SBD. We propose that the MD-based analysis of the inter domain
dynamics and structure modulation could be used as a tool to
computationally predict the allosteric behaviour and functional response
of Hsp70 upon introducing mutations or binding small molecules, with
potential applications for drug discovery.
Tipologia CRIS:
1.1 Articolo in rivista
Elenco autori:
Chiappori, Federica; Merelli, Ivan; Milanesi, Luciano; Colombo, Giorgio; Morra, Giulia
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