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Improving the Path to Obtain Spectroscopic Parameters for the PI3K—(Platinum Complex) System: Theoretical Evidences for Using 195Pt NMR as a Probe

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dc.rights.license CC BY eng
dc.contributor.author Santos, T.M.R. cze
dc.contributor.author Andolpho, G.A. cze
dc.contributor.author Tavares, C.A. cze
dc.contributor.author Gonçalves, M.A. cze
dc.contributor.author de Castro Ramalho, Teodorico cze
dc.date.accessioned 2025-12-05T12:43:40Z
dc.date.available 2025-12-05T12:43:40Z
dc.date.issued 2023 eng
dc.identifier.issn 2312-7481 eng
dc.identifier.uri http://hdl.handle.net/20.500.12603/1772
dc.description.abstract The absence of adequate force field (FF) parameters to describe certain metallic complexes makes new and deeper analyses impossible. In this context, after a group of researchers developed and validated an AMBER FF for a platinum complex (PC) conjugated with AHBT, new possibilities emerged. Thus, in this work, we propose an improved path to obtain NMR spectroscopic parameters, starting from a specific FF for PC, allowing to obtain more reliable information and a longer simulation time. Initially, a docking study was carried out between a PC and PI3K enzyme, aiming to find the most favorable orientation and, from this pose, to carry out a simulation of classical molecular dynamics (MD) with an explicit solvent and simulation time of 50 ns. To explore a new PC environment, a second MD simulation was performed only between the complex and water molecules, under the same conditions as the first MD. After the results of the two MDs, we proposed strategies to select the best amino acid residues (first MD) and water molecules (second MD) through the analyses of hydrogen bonds and minimum distance distribution functions (MDDFs), respectively. In addition, we also selected the best frames from the two MDs through the OWSCA algorithm. From these resources, it was possible to reduce the amount and computational cost of subsequent quantum calculations. Thus, we performed NMR calculations in two chemical environments, enzymatic and aqueous, with theory level GIAO–PBEPBE/NMR-DKH. So, from a strategic path, we were able to obtain more reliable chemical shifts and, therefore, propose safer spectroscopic probes, showing a large difference between the values of chemical shifts in the enzymatic and aqueous environments. © 2023 by the authors. eng
dc.format p. "Article number: 89" eng
dc.language.iso eng eng
dc.publisher MDPI eng
dc.relation.ispartof Magnetochemistry, volume 9, issue: 4 eng
dc.subject molecular dynamics eng
dc.subject NMR eng
dc.subject PI3K eng
dc.subject platinum complex eng
dc.subject spectroscopic probes eng
dc.title Improving the Path to Obtain Spectroscopic Parameters for the PI3K—(Platinum Complex) System: Theoretical Evidences for Using 195Pt NMR as a Probe eng
dc.type article eng
dc.identifier.obd 43880011 eng
dc.identifier.doi 10.3390/magnetochemistry9040089 eng
dc.publicationstatus postprint eng
dc.peerreviewed yes eng
dc.source.url https://www.mdpi.com/2312-7481/9/4/89 cze
dc.relation.publisherversion https://www.mdpi.com/2312-7481/9/4/89 eng
dc.rights.access Open Access eng


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