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Molecular Dynamics and Structural Studies of Zinc Chloroquine Complexes

Authors :
Mirko Paulikat
Daniele Vitone
Florian K. Schackert
Nils Schuth
Alessandra Barbanente
GiovanniMaria Piccini
Emiliano Ippoliti
Giulia Rossetti
Adam H. Clark
Maarten Nachtegaal
Michael Haumann
Holger Dau
Paolo Carloni
Silvano Geremia
Rita De Zorzi
Liliana Quintanar
Fabio Arnesano
Paulikat, Mirko
Vitone, Daniele
Schackert, Florian K
Schuth, Nil
Barbanente, Alessandra
Piccini, Giovannimaria
Ippoliti, Emiliano
Rossetti, Giulia
Clark, Adam H
Nachtegaal, Maarten
Haumann, Michael
Dau, Holger
Carloni, Paolo
Geremia, Silvano
De Zorzi, Rita
Quintanar, Liliana
Arnesano, Fabio
Publication Year :
2022
Publisher :
American Chemical Society (ACS), 2022.

Abstract

Chloroquine (CQ) is a first-choice drug against malaria and autoimmune diseases. It has been co-administered with zinc against SARS-CoV-2 and soon dismissed because of safety issues. The structural features of Zn-CQ complexes and the effect of CQ on zinc distribution in cells are poorly known. In this study, state-of-the-art computations combined with experiments were leveraged to solve the structural determinants of zinc-CQ interactions in solution and the solid state. NMR, ESI-MS, and X-ray absorption and diffraction methods were combined with ab initio molecular dynamics calculations to address the kinetic lability of this complex. Within the physiological pH range, CQ binds Zn2+ through the quinoline ring nitrogen, forming [Zn(CQH)Clx(H2O)3-x](3+)-x (x = 0, 1, 2, and 3) tetrahedral complexes. The Zn(CQH)Cl3 species is stable at neutral pH and at high chloride concentrations typical of the extracellular medium, but metal coordination is lost at a moderately low pH as in the lysosomal lumen. The pentacoordinate complex [Zn(CQH)(H2O)4]3+ may exist in the absence of chloride. This in vitro/in silico approach can be extended to other metal-targeting drugs and bioinorganic systems.

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....b092b1d5f9b8f4fa5d88c549900d2f5f
Full Text :
https://doi.org/10.26434/chemrxiv-2022-d9pjp-v2