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Role of Stereochemistry on the Biological Activity of Nature-Inspired 3-Br-Acivicin Isomers and Derivatives

Articolo
Data di Pubblicazione:
2023
Citazione:
Role of Stereochemistry on the Biological Activity of Nature-Inspired 3-Br-Acivicin Isomers and Derivatives / A. Galbiati, A. Zana, C. Borsari, M. Persico, S. Bova, O. Tkachuk, A.I. Corfu, L. Tamborini, N. Basilico, C. Fattorusso, S. Bruno, S. Parapini, P. Conti. - In: MOLECULES. - ISSN 1420-3049. - 28:7(2023 Apr 03), pp. 3172.1-3172.20. [10.3390/molecules28073172]
Abstract:
Chiral natural compounds are often biosynthesized in an enantiomerically pure fashion, and stereochemistry plays a pivotal role in biological activity. Herein, we investigated the significance of chirality for nature-inspired 3-Br-acivicin (3-BA) and its derivatives. The three unnatural isomers of 3-BA and its ester and amide derivatives were prepared and characterized for their antimalarial activity. Only the (5S, aS) isomers displayed significant antiplasmodial activity, revealing that their uptake might be mediated by the L-amino acid transport system, which is known to mediate the acivicin membrane's permeability. In addition, we investigated the inhibitory activity towards Plasmodium falciparum glyceraldehyde 3-phosphate dehydrogenase (PfGAPDH) since it is involved in the multitarget mechanism of action of 3-BA. Molecular modeling has shed light on the structural and stereochemical requirements for an efficient interaction with PfGAPDH, leading to covalent irreversible binding and enzyme inactivation. While stereochemistry affects the target binding only for two subclasses (1a-d and 4a-d), it leads to significant differences in the antimalarial activity for all subclasses, suggesting that a stereoselective uptake might be responsible for the enhanced biological activity of the (5S, aS) isomers.
Tipologia IRIS:
01 - Articolo su periodico
Keywords:
3-Br-acivicin; Plasmodium falciparum; covalent inhibitors; glyceraldehyde 3-phosphate dehydrogenase; multitarget; stereochemistry;
Elenco autori:
A. Galbiati, A. Zana, C. Borsari, M. Persico, S. Bova, O. Tkachuk, A.I. Corfu, L. Tamborini, N. Basilico, C. Fattorusso, S. Bruno, S. Parapini, P. Conti
Autori di Ateneo:
BASILICO NICOLETTA ( autore )
BORSARI CHIARA ( autore )
CONTI PAOLA ( autore )
PARAPINI SILVIA ( autore )
TAMBORINI LUCIA ( autore )
Link alla scheda completa:
https://air.unimi.it/handle/2434/968478
Link al Full Text:
https://air.unimi.it/retrieve/handle/2434/968478/2196492/molecules-28-03172%20(2).pdf
Progetto:
Sistema integrato di Ateneo per lo studio, il monitoraggio e il controllo delle infezioni, delle emergenze epidemiche e della resistenza ai farmaci antimicrobici (IDEA) Linea Strategica 7 - Risposta rapida alle infezioni batteriche e virali (IDEA)
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Settore CHIM/08 - Chimica Farmaceutica
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