» Articles » PMID: 33740297

Computing Metal-Binding Proteins for Therapeutic Benefit

Overview
Journal ChemMedChem
Specialties Chemistry
Pharmacology
Date 2021 Mar 19
PMID 33740297
Citations 5
Authors
Affiliations
Soon will be listed here.
Abstract

Over one third of biomolecules rely on metal ions to exert their cellular functions. Metal ions can play a structural role by stabilizing the structure of biomolecules, a functional role by promoting a wide variety of biochemical reactions, and a regulatory role by acting as messengers upon binding to proteins regulating cellular metal-homeostasis. These diverse roles in biology ascribe critical implications to metal-binding proteins in the onset of many diseases. Hence, it is of utmost importance to exhaustively unlock the different mechanistic facets of metal-binding proteins and to harness this knowledge to rationally devise novel therapeutic strategies to prevent or cure pathological states associated with metal-dependent cellular dysfunctions. In this compendium, we illustrate how the use of a computational arsenal based on docking, classical, and quantum-classical molecular dynamics simulations can contribute to extricate the minutiae of the catalytic, transport, and inhibition mechanisms of metal-binding proteins at the atomic level. This knowledge represents a fertile ground and an essential prerequisite for selectively targeting metal-binding proteins with small-molecule inhibitors aiming to (i) abrogate deregulated metal-dependent (mis)functions or (ii) leverage metal-dyshomeostasis to selectively trigger harmful cells death.

Citing Articles

The conformational plasticity of the selectivity filter methionines controls the in-cell Cu(I) uptake through the CTR1 transporter.

Janos P, Aupic J, Ruthstein S, Magistrato A QRB Discov. 2023; 3:e3.

PMID: 37529280 PMC: 10392627. DOI: 10.1017/qrd.2022.2.


Switching from Aromatase Inhibitors to Dual Targeting Flavonoid-Based Compounds for Breast Cancer Treatment.

Gobbi S, Martini S, Rozza R, Spinello A, Caciolla J, Rampa A Molecules. 2023; 28(7).

PMID: 37049810 PMC: 10096035. DOI: 10.3390/molecules28073047.


Syntheses and structural characterization of divalent metal complexes (Co, Ni, Pd and Zn) of sterically hindered thiourea ligand and a theoretical insight of their interaction with SARS-CoV-2 enzyme.

Noor A, Qayyum S, Ali Z, Muhammad N J Mol Struct. 2022; 1274:134442.

PMID: 36337589 PMC: 9621400. DOI: 10.1016/j.molstruc.2022.134442.


Disrupting Cu trafficking as a potential therapy for cancer.

Qasem Z, Pavlin M, Ritacco I, Avivi M, Meron S, Hirsch M Front Mol Biosci. 2022; 9:1011294.

PMID: 36299299 PMC: 9589254. DOI: 10.3389/fmolb.2022.1011294.


Dynamical interplay between the human high-affinity copper transporter hCtr1 and its cognate metal ion.

Walke G, Aupic J, Kashoua H, Janos P, Meron S, Shenberger Y Biophys J. 2022; 121(7):1194-1204.

PMID: 35202609 PMC: 9034245. DOI: 10.1016/j.bpj.2022.02.033.