Literature DB >> 28849726

Palladium(II) complexes of biorelevant ligands. Synthesis, structures, cytotoxicity and rich DNA/HSA interaction studies.

Hassan Mansouri-Torshizi1, Sareh Zareian-Jahromi1, Arezou Ghahghaei2, Somaye Shahraki3, Fatemeh Khosravi1, Mostafa Heidari Majd4.   

Abstract

In this work, a pair of new palladium(II) complexes, [Pd(Gly)(Phe)] and [Pd(Gly)(Tyr)], (where Gly is glycine, Phe is phenylalanine, and Tyr is tyrosine) were synthesized and characterized by UV-Vis, FT-IR, elemental analysis, 1H-NMR, and conductivity measurements. The detailed 1H NMR and infrared spectral studies of these Pd(II) complexes ascertain the mode of binding of amino acids to palladium through nitrogen of -NH2 and oxygen of -COO- groups as bidentate chelates. The Pd(II) complexes have been tested for in vitro cytotoxicity activities against cancer cell line of K562. Interactions of these Pd(II) complexes with CT-DNA and human serum albumin were identified through absorption/emission titrations and gel electrophoresis which indicated significant binding proficiency. The binding distance (r) between these synthesized complexes and HSA based on Forster's theory of non-radiation energy transfer were calculated. Alterations of HSA secondary structure induced by complexes were confirmed by FT-IR measurements. The results of emission quenching at three temperatures have revealed that the quenching mechanism of these Pd(II) complexes with CT-DNA and HSA were the static and dynamic quenching mechanism, respectively. Binding constants (Kb), binding site number (n), and the corresponding thermodynamic parameters were calculated and revealed that the hydrogen binding and hydrophobic forces played a major role when Pd(II) complexes interacted with DNA and HSA, respectively. We bid that [Pd(Gly)(Phe)] and [Pd(Gly)(Tyr)] complexes exhibit the groove binding with CT-DNA and interact with the main binding pocket of HSA. The complexes follow the binding affinity order of [Pd(Gly)(Tyr)] > [Pd(Gly)(Phe)] with CT-DNA- and HSA-binding.

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Keywords:  DNA-binding; EB ethidium bromide; Gly glycine; HSA binding; Kb binding constant; Ksv Stern–Volmer constant; Phe phenylalanine; Tyr tyrosine; amino acids; kq quenching constant; n number of binding sites; palladium complexes; ΔH° enthalpy changes; ΔS° entropy changes

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Year:  2017        PMID: 28849726     DOI: 10.1080/07391102.2017.1372309

Source DB:  PubMed          Journal:  J Biomol Struct Dyn        ISSN: 0739-1102


  2 in total

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Authors:  Chuanrong Yu; Mostafa Heidari Majd; Fereshteh Shiri; Somaye Shahraki; Pouya Karimi
Journal:  Mol Divers       Date:  2021-08-20       Impact factor: 2.943

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Authors:  Luis Alberto Esteves Batista de Carvalho; Adriana Pereira Mamede; Ana Lucia Marques Batista de Carvalho; Joana Marques; Gianfelice Cinque; Svemir Rudić; Maria Paula Matos Marques
Journal:  Biophys J       Date:  2021-06-30       Impact factor: 3.699

  2 in total

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