Literature DB >> 18240381

Synthesis and structure-activity relationships of metal-ligand complexes that potently inhibit cell migration.

Anwar B Beshir1, Sankar K Guchhait, José A Gascón, Gabriel Fenteany.   

Abstract

We screened the National Cancer Institute Diversity Set compound collection for small molecules that affect mammalian cell migration and identified NSC 295642 as an inhibitor of cell motility with nanomolar potency. We found by LC-MS and X-ray crystallography that NSC 295642, a Cu(II) complex of the Schiff base product of condensation of S-benzyl dithiocarbazate and 2-acetylpyridine, has a bridged dimeric Cu2Cl2(L)2 structure with distorted square pyramidal geometry. Each of the two copper atoms is five-coordinated to one of the two tridentate chelating ligands and both bridging chlorine atoms. To define structure-activity relationships,we investigated the bioactivity of related metal-ligand complexes derived from different metal(II) atoms and different ligands. Complexation of the NSC 295642 ligand with Zn(II) or Ni(II), delivered as metal(II) chloride salts under conditions identical to those used for preparation of the original Cu(II) complex, instead results in distorted octahedral bis-chelate structures, where a single metal atom is six-coordinated to two ligands. The Zn(L)2 complex possesses a potency similar to that of the Cu2Cl2(L)2 complex, while the Ni(L)2 has no antimigratory activity at all. We carried out density functional theory calculations to obtain the electronic ground state geometry of the complexes, both in vacuum and implicit water solvent. The X-ray crystal and energy-minimized structures are very similar and exhibit a transoid orientation of the S-benzyl groups relative to the central metal-coordinated rings for both of the bioactive Cu2Cl2(L)2 and Zn(L)2 complexes, despite their different coordination geometries. In contrast, the biologically inactive Ni(L)2 complex adopts a cisoid conformation. Varying the ligand structure, we found that hydrophobic S-alkylaryl groups are required for activity. Complexes with a simple S-methyl group, S-benzyl groups with polar substitutions or a carboxylated pyridine ring exhibit dramatically reduced activity. We tested the most potent metal-ligand complex in a number of cancer cell lines and found cell-type selectivity in its effect on cell motility. Collectively, these results suggest that a two-ligand structure with bulky nonpolar S-substituents in a transoid conformation is important for the antimigratory activity of these metal-ligand complexes.

Entities:  

Mesh:

Substances:

Year:  2008        PMID: 18240381     DOI: 10.1016/j.bmcl.2007.11.099

Source DB:  PubMed          Journal:  Bioorg Med Chem Lett        ISSN: 0960-894X            Impact factor:   2.823


  5 in total

1.  Integrated Approach to Interaction Studies of Pyrene Derivatives with Bovine Serum Albumin: Insights from Theory and Experiment.

Authors:  Selvaraj Sengottiyan; Kakoli Malakar; Arunkumar Kathiravan; Marappan Velusamy; Alicja Mikolajczyk; Tomasz Puzyn
Journal:  J Phys Chem B       Date:  2022-05-18       Impact factor: 3.466

2.  Bis{4-methylbenzyl 2-[4-(propan-2-yl)benzyl-idene]hydrazine-carbodi-thio-ato-κ2N2,S}nickel(II): crystal structure and Hirshfeld surface analysis.

Authors:  Enis Nadia Md Yusof; Thahira B S A Ravoof; Mohamed I M Tahir; Mukesh M Jotani; Edward R T Tiekink
Journal:  Acta Crystallogr E Crystallogr Commun       Date:  2017-02-17

3.  In vitro and in vivo trypanocidal activity of H2bdtc-loaded solid lipid nanoparticles.

Authors:  Zumira A Carneiro; Pedro I da S Maia; Renata Sesti-Costa; Carla D Lopes; Tatiana A Pereira; Cristiane M Milanezi; Marcelo A Pereira da Silva; Renata F V Lopez; João S Silva; Victor M Deflon
Journal:  PLoS Negl Trop Dis       Date:  2014-05-08

4.  Evaluation of Pharmacological Activity of Heterobimetallic Coordination Compounds Containing N, N-Bis (2-hydroxyethyl)-Ethylenediamine on HT29, HeLa, C6 and Vero cells.

Authors:  Ali Aydin; Şengül Aslan Korkmaz
Journal:  Iran J Pharm Res       Date:  2019       Impact factor: 1.696

5.  Cancer Cell Resistance Against the Clinically Investigated Thiosemicarbazone COTI-2 Is Based on Formation of Intracellular Copper Complex Glutathione Adducts and ABCC1-Mediated Efflux.

Authors:  Julia H Bormio Nunes; Sonja Hager; Marlene Mathuber; Vivien Pósa; Alexander Roller; Éva A Enyedy; Alessia Stefanelli; Walter Berger; Bernhard K Keppler; Petra Heffeter; Christian R Kowol
Journal:  J Med Chem       Date:  2020-11-15       Impact factor: 7.446

  5 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.