The novel N-1-sulfonylcytosine-cyclam conjugates 1 and 2 conjugates are ionized by electrospray ionization mass spectrometry (ESI MS) in positive and negative modes (ES and ES ) as singly protonated/deprotonated species or as singly or doubly charged metal complexes. Their structure and fragmentation behavior is examined by collision induced experiments. It was observed that the structure of the conjugate dictated the mode of the ionization: 1 was analyzed in ES mode while 2 in positive mode. Complexation with metal ions did not have the influence on the ionization mode. Zn and Cu complexes with ligand 1 followed the similar fragmentation pattern in negative ionization mode. The transformation from 2°-amine in 1 to 3°-amine of cyclam ring in 2 leads to the different fragmentation patterns due to the modification of the protonation priority which changed the fragmentation channels within the conjugate itself. Cu ions formed complexes practically immediately, and the priority had the cyclam portion of the ligand 2. The structure of the formed Zn complexes with ligand 2 depended on the number of 3° amines within the cyclam portion of the conjugate and the ratio of the metal:ligand used. The cleavage of the cyclam ring of metal complexes is driven by the formation of the fragment that suited the coordinating demand of the metal ions and the collision energy applied. Finally, it was shown that the structure of the cyclam conjugate dictates the fragmentation reactions and not the metal ions.
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http://dx.doi.org/10.1002/jms.4197 | DOI Listing |
Pharmaceutics
July 2024
Centre for Biomedicine and Positron Emission Tomography Research Centre, The University of Hull, Cottingham Road, Hull HU6 7RX, UK.
Understanding the role of chemokine receptors in health and disease has been of increasing interest in recent years. Chemokine receptor CXCR4 has been extensively studied because of its defined role in immune cell trafficking, HIV infection, inflammatory diseases, and cancer progression. We have developed high affinity rigidified CXCR4 antagonists that incorporate metal ions to optimize the binding interactions with the aspartate side chains at the extracellular surface of the CXCR4 chemokine receptor and increase the residence time.
View Article and Find Full Text PDFInorg Chem
August 2024
Department of Chemistry, Indian Institute of Technology, Kanjikode, Palakkad, Kerala 678623, India.
A deeper comprehension of the characteristics of metal-superoxide and metal-peroxide chemical species is imperative, considering their pivotal functions in oxygen transport, enzymatic activation, and catalytic oxygenations. O activation is mediated by the interconversion of superoxide and peroxide species. Even though there are multiple studies on metal-superoxide and -peroxide intermediates, robust examples of their interconversion processes are scarce synthetically.
View Article and Find Full Text PDFJ Am Chem Soc
January 2024
Department of Chemistry and Nano Science, Ewha Womans University, Seoul 03760, Korea.
We report the macrocyclic ring size-electronic structure-electrophilic reactivity correlation of mononuclear nonheme iron(III)-peroxo complexes bearing -tetramethylated cyclam analogues (-TMC), [Fe(O)(12-TMC)] (), [Fe(O)(13-TMC)] (), and [Fe(O)(14-TMC)] (), as a model study of Rieske oxygenases. The Fe(III)-peroxo complexes show the same δ and pseudo-σ bonds between iron and the peroxo ligand. However, the strength of these interactions varies depending on the ring size of the -TMC ligands; the overall Fe-O bond strength and the strength of the Fe-O δ bond increase gradually as the ring size of the -TMC ligands becomes smaller, such as from 14-TMC to 13-TMC to 12-TMC.
View Article and Find Full Text PDFMolecules
December 2023
Centro de Química Estrutural, Instituto Superior Técnico, Universidade de Lisboa, Av. Rovisco Pais 1, 1049-001 Lisbon, Portugal.
[(BnCyclam)Y(N(SiMe))] was prepared by reaction of HBnCyclam with Y[N(SiMe)]. The protonation of the macrocycle ligand in [(BnCyclam)Y(N(SiMe))] is observed upon reaction with [HNMe][BPh] leading to the formation of [(HBnCyclam)Y(N(SiMe))][BPh]. DFT analysis of [(BnCyclam)Y(N(SiMe))] showed that the HOMO is located on the anionic nitrogen atoms of the cyclam ring indicating that protonation follows orbital control.
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