A series of dithiocarbamates (DTCs) was investigated for the inhibition of the beta-class carbonic anhydrase (CAs, EC 4.2.1.1) from the fungal parasite Malassezia globosa, MgCA, a validated anti-dandruff drug target. These DTCs incorporate various scaffold, among which those of N,N-dimethylaminoethylenediamine, the aminoalcohols with 3-5 carbon atoms in their molecule, 3-amino-quinuclidine, piperidine, morpholine and piperazine derivatives, as well as phenethylamine and its 4-sulfamoylated derivative. Several DTCs resulted more effective in inhibiting MgCA compared to the standard sulfonamide drug acetazolamide (K-I of 74 mu M), with K(I)s ranging between 383 and 6235 nM. A computational approach, involving a homology modeling of the enzyme and docking inhibitors within its active site, helped us rationalize the results. This study may contribute to better understand the inhibition profile of MgCA, and offer new ideas for the design of modulators of activity which belong to less investigated chemical classes, thus potentially useful to combat dandruff and other fungal infections. (C) 2016 Elsevier Ltd. All rights reserved.

Dithiocarbamates effectively inhibit the beta-carbonic anhydrase from the dandruff-producing fungus Malassezia globosa

Del Prete Sonia;Capasso Clemente;
2017

Abstract

A series of dithiocarbamates (DTCs) was investigated for the inhibition of the beta-class carbonic anhydrase (CAs, EC 4.2.1.1) from the fungal parasite Malassezia globosa, MgCA, a validated anti-dandruff drug target. These DTCs incorporate various scaffold, among which those of N,N-dimethylaminoethylenediamine, the aminoalcohols with 3-5 carbon atoms in their molecule, 3-amino-quinuclidine, piperidine, morpholine and piperazine derivatives, as well as phenethylamine and its 4-sulfamoylated derivative. Several DTCs resulted more effective in inhibiting MgCA compared to the standard sulfonamide drug acetazolamide (K-I of 74 mu M), with K(I)s ranging between 383 and 6235 nM. A computational approach, involving a homology modeling of the enzyme and docking inhibitors within its active site, helped us rationalize the results. This study may contribute to better understand the inhibition profile of MgCA, and offer new ideas for the design of modulators of activity which belong to less investigated chemical classes, thus potentially useful to combat dandruff and other fungal infections. (C) 2016 Elsevier Ltd. All rights reserved.
2017
Istituto di Bioscienze e Biorisorse
Carbonic anhydrase
beta-CA-class enzyme
Dithiocarbamate
Inhibitor
Malassezia globosa
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/326233
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