In order to discover novel probes that may help in the investigation and control of infectious diseases through a new mechanism of action, we have evaluated a library of phenol-based natural products (NPs) for enzyme inhibition against four recently characterized pathogen β-family carbonic anhydrases (CAs). These include CAs from Mycobacterium tuberculosis, Candida albicans, and Cryptococcus neoformans as well as α-family human CA I and CA II for comparison. Many of the NPs selectively inhibited the mycobacterial and fungal β-CAs, with the two best performing compounds displaying submicromolar inhibition with a preference for fungal over human CA inhibition of more than 2 orders of magnitude. These compounds provide the first example of non-sulfonamide inhibitors that display β over α CA enzyme selectivity. Structural characterization of the library compounds in complex with human CA II revealed a novel binding mode whereby a methyl ester interacts via a water molecule with the active site zinc.

Natural product-based phenols as novel probes for mycobacterial and fungal carbonic anhydrases / R. A. Davis;A. Hofmann;A. Osman;R. A. Hall;F. A. Mühlschlegel;D. Vullo;A. Innocenti;C. T. Supuran;S. Poulsen. - In: JOURNAL OF MEDICINAL CHEMISTRY. - ISSN 0022-2623. - STAMPA. - 54:(2011), pp. 1682-1692. [10.1021/jm1013242]

Natural product-based phenols as novel probes for mycobacterial and fungal carbonic anhydrases.

VULLO, DANIELA;SUPURAN, CLAUDIU TRANDAFIR;
2011

Abstract

In order to discover novel probes that may help in the investigation and control of infectious diseases through a new mechanism of action, we have evaluated a library of phenol-based natural products (NPs) for enzyme inhibition against four recently characterized pathogen β-family carbonic anhydrases (CAs). These include CAs from Mycobacterium tuberculosis, Candida albicans, and Cryptococcus neoformans as well as α-family human CA I and CA II for comparison. Many of the NPs selectively inhibited the mycobacterial and fungal β-CAs, with the two best performing compounds displaying submicromolar inhibition with a preference for fungal over human CA inhibition of more than 2 orders of magnitude. These compounds provide the first example of non-sulfonamide inhibitors that display β over α CA enzyme selectivity. Structural characterization of the library compounds in complex with human CA II revealed a novel binding mode whereby a methyl ester interacts via a water molecule with the active site zinc.
2011
54
1682
1692
R. A. Davis;A. Hofmann;A. Osman;R. A. Hall;F. A. Mühlschlegel;D. Vullo;A. Innocenti;C. T. Supuran;S. Poulsen
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/776277
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