Selective union of ATP vs ADP to an amino/amide macrocycle and its Cu2+ complexes: potentiometric, spectrophotometric and theoretical approximations

The protonation equilibria of a new amine/amide type macrocycle and its complexation with Cu(II) in solution have been studied by potentiometry and UV-Visible Spectrophotometry. The ligand shows four protonation constants and one unusual deprotonation constant. Six mononuclear and four binuclear co...

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Main Authors: Armando Ferrer Serrano, Yennys Hernández Molina
Format: Article
Language:English
Published: Universidade Federal de Viçosa (UFV) 2022-08-01
Series:The Journal of Engineering and Exact Sciences
Subjects:
Online Access:https://periodicos.ufv.br/jcec/article/view/14571
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author Armando Ferrer Serrano
Yennys Hernández Molina
author_facet Armando Ferrer Serrano
Yennys Hernández Molina
author_sort Armando Ferrer Serrano
collection DOAJ
description The protonation equilibria of a new amine/amide type macrocycle and its complexation with Cu(II) in solution have been studied by potentiometry and UV-Visible Spectrophotometry. The ligand shows four protonation constants and one unusual deprotonation constant. Six mononuclear and four binuclear copper II complexes were found and reported its stability constant values. Some species predominate in specific ranges of pH, which might be important for biomimetic studies. It was found that the studied ligand forms stable mononuclear and binuclear complexes with Cu (II) and these species have similar geometries, squared pyramid, above pH 7. An evaluation through its potentiometrically determined stability constants of the selective recognition of ATP over ADP by this macrocycle and its Cu (II) complexes is presented. With or without the presence of Cu (II) ions, the ligand forms more stable complexes with ATP over ADP, the stability of these species increase with pH. Both, the stability quotients and the species distribution diagrams for the ATP-ADP mixed systems shows the inclination of the studied systems to selectively bind ATP over ADP, so, in principle, they can be used for the selective recognition of ATP or as catalysts in the hydrolysis of this nucleotide.
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spelling doaj-art-c5af3378ab0341b4981a3714711214e82025-02-02T19:56:13ZengUniversidade Federal de Viçosa (UFV)The Journal of Engineering and Exact Sciences2527-10752022-08-018610.18540/jcecvl8iss6pp14571-01iSelective union of ATP vs ADP to an amino/amide macrocycle and its Cu2+ complexes: potentiometric, spectrophotometric and theoretical approximationsArmando Ferrer Serrano0Yennys Hernández Molina1Departamento de Química, Facultad de Ciencias Naturales y Exactas, Universidad de Oriente, CubaDepartamento de Química, Facultad de Ciencias Naturales y Exactas, Universidad de Oriente, Cuba The protonation equilibria of a new amine/amide type macrocycle and its complexation with Cu(II) in solution have been studied by potentiometry and UV-Visible Spectrophotometry. The ligand shows four protonation constants and one unusual deprotonation constant. Six mononuclear and four binuclear copper II complexes were found and reported its stability constant values. Some species predominate in specific ranges of pH, which might be important for biomimetic studies. It was found that the studied ligand forms stable mononuclear and binuclear complexes with Cu (II) and these species have similar geometries, squared pyramid, above pH 7. An evaluation through its potentiometrically determined stability constants of the selective recognition of ATP over ADP by this macrocycle and its Cu (II) complexes is presented. With or without the presence of Cu (II) ions, the ligand forms more stable complexes with ATP over ADP, the stability of these species increase with pH. Both, the stability quotients and the species distribution diagrams for the ATP-ADP mixed systems shows the inclination of the studied systems to selectively bind ATP over ADP, so, in principle, they can be used for the selective recognition of ATP or as catalysts in the hydrolysis of this nucleotide. https://periodicos.ufv.br/jcec/article/view/14571ProtonationCopper complexMacrocycleSelectivity quotientATP - ADPRecognition
spellingShingle Armando Ferrer Serrano
Yennys Hernández Molina
Selective union of ATP vs ADP to an amino/amide macrocycle and its Cu2+ complexes: potentiometric, spectrophotometric and theoretical approximations
The Journal of Engineering and Exact Sciences
Protonation
Copper complex
Macrocycle
Selectivity quotient
ATP - ADP
Recognition
title Selective union of ATP vs ADP to an amino/amide macrocycle and its Cu2+ complexes: potentiometric, spectrophotometric and theoretical approximations
title_full Selective union of ATP vs ADP to an amino/amide macrocycle and its Cu2+ complexes: potentiometric, spectrophotometric and theoretical approximations
title_fullStr Selective union of ATP vs ADP to an amino/amide macrocycle and its Cu2+ complexes: potentiometric, spectrophotometric and theoretical approximations
title_full_unstemmed Selective union of ATP vs ADP to an amino/amide macrocycle and its Cu2+ complexes: potentiometric, spectrophotometric and theoretical approximations
title_short Selective union of ATP vs ADP to an amino/amide macrocycle and its Cu2+ complexes: potentiometric, spectrophotometric and theoretical approximations
title_sort selective union of atp vs adp to an amino amide macrocycle and its cu2 complexes potentiometric spectrophotometric and theoretical approximations
topic Protonation
Copper complex
Macrocycle
Selectivity quotient
ATP - ADP
Recognition
url https://periodicos.ufv.br/jcec/article/view/14571
work_keys_str_mv AT armandoferrerserrano selectiveunionofatpvsadptoanaminoamidemacrocycleanditscu2complexespotentiometricspectrophotometricandtheoreticalapproximations
AT yennyshernandezmolina selectiveunionofatpvsadptoanaminoamidemacrocycleanditscu2complexespotentiometricspectrophotometricandtheoreticalapproximations