| Literature DB >> 34063288 |
María Eugenia García-Rubiño1, Antonio Matilla-Hernández2, Antonio Frontera3, Luis Lezama4, Juan Niclós-Gutiérrez2, Duane Choquesillo-Lazarte5.
Abstract
In the extensive field ofEntities:
Keywords: adenine; bicephalic chelate; copper; model receptor; synthetic nucleoside
Year: 2021 PMID: 34063288 PMCID: PMC8147406 DOI: 10.3390/ph14050426
Source DB: PubMed Journal: Pharmaceuticals (Basel) ISSN: 1424-8247
Scheme 1(a) Adenosine, (b) its synthetic acyclic analog 9heade, (c) the ethylenediaminetetraacetate(4-) ion (EDTA)4–′chelating ligands, and (d) the novel [Cu2(µ2-EDTA)(9heade)2(H2O)4] complex molecule.
Bond distances (Å) and trans-angles to the six-coordinations of Cu(II) in compound 1.
| Atoms | Distance/Angle |
|---|---|
| Cu(1)-O(21) | 1.943(4) |
| Cu(1)-O (11) | 1.978(4) |
| Cu(1)-N(7) | 2.032(6) |
| Cu(1)-N(10) | 2.039(5) |
| Cu(1)-O(1) | 2.331(5) |
| Cu(1)-O(2) | 2.816(6) |
| O(21)-Cu(1)-O(11) | 164.4(2) |
| N(7)-Cu(1)-N(10) | 174.8(2) |
| O(1)-Cu(1)-O(2) | 163.9(2) |
Figure 1Centrosymmetric complex molecule [Cu2(µ-EDTA)(9heade)2(H2O)4] of compound 1 with the numbering notation used for some non-hydrogen atoms. Non-coordinated water is omitted for clarity. Symmetry code a (or ≠1 in supplementary material S4 and S5) = −x−1, −y, −z + 1 relates the two equivalent halves of this molecule.
Scheme 2Distortions of a regular octahedron (Oh, for M ≠ Cu) toward other distorted six-coordination’s of Cu(II) (4 + 2, 4 + 1+1, 4 + 1 + 1*) to finally a distorted square-based Cu(II) coordination (4 + 1).
Figure 2Crystals of 1 suitable for X-ray diffraction measurements. Photograph captured with polarized light, which allows for distinguishing the quality of the crystals.
Figure 3Crystal packing of compound 1, showing H-bonding interactions that involve the (9heade)-O-H group and water molecules, connecting layers of complex molecules parallel to the ac crystal plane.
Figure 4Molecular electrostatic potential (MEP) surfaces of the model of compound 1 using two different zenithal views: the coordinated water molecule pointing (a) up or (b) down using the 0.001 a.u. isosurface. The MEP values at selected points of the surface are indicated in kcal/mol.
Figure 5Partial view of the X-ray structure of compound 1 showing three co-crystallized water molecules connecting two [Cu2(µ-EDTA)(9heade)2(H2O)4] units. Distances are given in Å.
Figure 6(a) Self-assembled dimer of 1 with indication of the intra- and inter-molecular H-bonds involving the amino group. (b,d) QTAIM distribution of bond and ring critical points (green and yellow spheres, respectively) and bond paths for two assemblies of compound 1. (c) Assembly used to evaluate the Cu···OH2 interactions. The dimerization energies computed at the PBE0-D3/def2-TZVP are also indicated. All distances (a,b,d) are given in Å.
Figure 7TGA of compound 1 under dry air flow.
Figure 8Experimental and simulated r.t. powder electron spin resonance (ESR) spectra of 1 recorded at (left) X-band and (right) Q-band.
Figure 9Magnetic properties of compound 1 (see text for the details of fit).
Figure 10Fragment of the polymer {Cd(µ2-(cis-1,2-chdc) µ2-(N1,N7-9heade)(H2O)]·4H2O}n, showing (dashed cyan lines) the interligand (9heade)N6-H···O(carboxilato, cis-1,2- chdca) H-bonding interactions cooperating with the Cd-N1 and Cd-N7 coordination bonds. Non-coordinated water omitted for clarity.
Figure 11Anti-parallel π-stacking between adenine-9heade moieties in the crystal of the polymer {Cd(µ2-({Cd(µ2-(cis-1,2-CHDA) µ2-(N1,N7-9heade)(H2O)]·4H2O}n.