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Article Dans Une Revue Biochimie Année : 2006

Structural insights into protein–uranyl interaction: towards an in silico detection method

Résumé

Documenting the modes of interaction of uranyl (UO 2 2+) with large biomolecules, and particularly with proteins, is instrumental for the interpretation of its behavior in vitro and in vivo. The gathering of three-dimensional information concerning uranyl-first shell atoms from two structural databases, the Cambridge Structural Databank and the Protein Data Bank (PDB) allowed a screening of corresponding topologies in proteins of known structure. In the computer-aided procedure, all potentially bound residues from the template structure were granted full flexibility using a rotamer library. The Amber force-field was used to loosen constraints and score each predicted site. Our algorithm was validated as a first stage through the recognition of existing experimental data in the PDB. The coherent localization of missing atoms in the density map of an ambiguous uranium/uranyl-protein complex exemplified the efficiency of our approach, which is currently suggesting the experimental investigation of uranyl-protein binding site.
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Dates et versions

hal-04269604 , version 1 (03-11-2023)

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O. Pible, P. Guilbaud, J.-L. Pellequer, C. Vidaud, E. Quéméneur. Structural insights into protein–uranyl interaction: towards an in silico detection method. Biochimie, 2006, 88 (11), pp.1631-1638. ⟨10.1016/j.biochi.2006.05.015⟩. ⟨hal-04269604⟩

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