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Targeting Siderophore-Mediated Iron Uptake in M. abscessus: A New Strategy to Limit the Virulence of Non-Tuberculous Mycobacteria

Academic Article
Publication Date:
2023
Citation:
Targeting Siderophore-Mediated Iron Uptake in M. abscessus: A New Strategy to Limit the Virulence of Non-Tuberculous Mycobacteria / M. Mori, G. Stelitano, G. Cazzaniga, A. Gelain, A. Tresoldi, M. Cocorullo, M. Roversi, L.R. Chiarelli, M. Tomaiuolo, P. Delre, G. Felice Mangiatordi, A. Griego, L. Rizzello, A. Cassetta, S. Covaceuszach, S. Villa, F. Meneghetti. - In: PHARMACEUTICS. - ISSN 1999-4923. - 15:2(2023 Feb), pp. 502.1-502.13. [10.3390/pharmaceutics15020502]
abstract:
Targeting pathogenic mechanisms, rather than essential processes, represents a very attractive approach for the development of new antimycobacterial drugs. In this context, iron acquisition routes have recently emerged as potentially druggable pathways. However, the importance of si-derophore biosynthesis in the virulence and pathogenicity of M. abscessus (Mab) is still poorly un-derstood. In this study, we investigated the Salicylate Synthase (SaS) of Mab as an innovative mo-lecular target for the development of inhibitors of siderophore production. Notably, Mab-SaS does not have any counterpart in human cells, making it an interesting candidate for drug discovery. Starting from the analysis of the binding of a series of furan-based derivatives, previously identified by our group as inhibitors of MbtI from M. tuberculosis (Mtb), we successfully selected the lead compound 1, exhibiting a strong activity against Mab-SaS (IC50 ≈ 5 µM). Computational studies characterized the key interactions between 1 and the enzyme, highlighting the important roles of Y387, G421, and K207, the latter being one of the residues involved in the first step of the catalytic reaction. These results support the hypothesis that 5-phenylfuran-2-carboxylic acids are also a promising class of Mab-SaS inhibitors, paving the way for the optimization and rational design of more potent derivatives.
IRIS type:
01 - Articolo su periodico
Keywords:
antimicrobial resistance; cystic fibrosis; drug design; grating-coupled interferometry (GCI); ho-mology model; siderophores;
List of contributors:
M. Mori, G. Stelitano, G. Cazzaniga, A. Gelain, A. Tresoldi, M. Cocorullo, M. Roversi, L.R. Chiarelli, M. Tomaiuolo, P. Delre, G. Felice Mangiatordi, A. Griego, L. Rizzello, A. Cassetta, S. Covaceuszach, S. Villa, F. Meneghetti
Authors of the University:
GELAIN ARIANNA ( author )
MENEGHETTI FIORELLA ( author )
MORI MATTEO ( author )
RIZZELLO LORIS ( author )
VILLA STEFANIA ( author )
Link to information sheet:
https://air.unimi.it/handle/2434/953166
Full Text:
https://air.unimi.it/retrieve/handle/2434/953166/2144600/pharmaceutics-15-00502-v2%20(1).pdf
Project:
Piano di Sostegno alla Ricerca 2015-2017 - Linea 2 "Dotazione annuale per attività istituzionali" (anno 2021)
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Research Areas

Concepts (2)


Settore CHIM/08 - Chimica Farmaceutica

Settore CHEM-07/A - Chimica farmaceutica
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