Energetics and Structural Characterization of the large-scale Functional Motion of Adenylate Kinase


Autoria(s): Formoso Estensoro, Elena; Limongelli, Vittorio; Parrinello, Michele
Data(s)

05/05/2016

05/05/2016

12/02/2015

Resumo

Adenylate Kinase (AK) is a signal transducing protein that regulates cellular energy homeostasis balancing between different conformations. An alteration of its activity can lead to severe pathologies such as heart failure, cancer and neurodegenerative diseases. A comprehensive elucidation of the large-scale conformational motions that rule the functional mechanism of this enzyme is of great value to guide rationally the development of new medications. Here using a metadynamics-based computational protocol we elucidate the thermodynamics and structural properties underlying the AK functional transitions. The free energy estimation of the conformational motions of the enzyme allows characterizing the sequence of events that regulate its action. We reveal the atomistic details of the most relevant enzyme states, identifying residues such as Arg119 and Lys13, which play a key role during the conformational transitions and represent druggable spots to design enzyme inhibitors. Our study offers tools that open new areas of investigation on large-scale motion in proteins.

Identificador

Scientific Reports 5 2015 : (2015) // Article ID 8425

2045-2322

http://hdl.handle.net/10810/18166

10.1038/srep08425

Idioma(s)

eng

Publicador

Nature Publishing

Relação

http://www.nature.com/articles/srep08425

Direitos

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info:eu-repo/semantics/openAccess

Palavras-Chave #particle mesh ewald #molecular-dynamics #scherichia-coli #free-energy #conformational transitions #substrate-binding #ligand-binding #mechanism #proteins #simulation
Tipo

info:eu-repo/semantics/article