The fast and constant development of drug-resistant bacteria represents a serious medical emergence. To overcome this problem, the development of drugs with new structures and modes of action is urgently needed. In this context, avibactam represents a promising, innovative inhibitor of beta-lactamases with a novel molecular structure compared to previously developed inhibitors, showing a promising inhibitory activity toward a significant number of beta-lactamase enzymes. In this work, we studied, at the atomistic level, the mechanisms of formation of the covalent complex between avibactam and TEM-1, an experimentally well-characterized class A beta-lactamase, using classical and quantum mechanics/molecular mechanics (QM/MM) simulations combined with metadynamics. Our simulations provide a detailed structural and energetic picture of the molecular steps leading to the formation of the avibactam/TEM-1 covalent adduct. In particular, they support a mechanism in which the rate-determining step is the water-assisted Glu166 deprotonation by Ser70. In this mechanistic framework, the predicted activation energy is in good agreement with experimental kinetic measurements. Additionally, our simulations highlight the important role of Lys73 in assisting the Ser70 and Ser130 deprotonations. While based on the specific case of the avibactam/TEM-1, the simple protocol we present here can be immediately extended and applied to the study of covalent complex formation in different enzyme-inhibitor pairs. © 2014 American Chemical Society.

Inactivation of TEM-1 by avibactam (NXL-104): Insights from quantum mechanics/molecular mechanics metadynamics simulations / J. Sgrignani, G. Grazioso, M. De Amici, G. Colombo. - In: BIOCHEMISTRY. - ISSN 0006-2960. - 53:31(2014 Jul), pp. 5174-5185. [10.1021/bi500589x]

Inactivation of TEM-1 by avibactam (NXL-104): Insights from quantum mechanics/molecular mechanics metadynamics simulations

G. Grazioso
Secondo
;
M. De Amici
Penultimo
;
2014

Abstract

The fast and constant development of drug-resistant bacteria represents a serious medical emergence. To overcome this problem, the development of drugs with new structures and modes of action is urgently needed. In this context, avibactam represents a promising, innovative inhibitor of beta-lactamases with a novel molecular structure compared to previously developed inhibitors, showing a promising inhibitory activity toward a significant number of beta-lactamase enzymes. In this work, we studied, at the atomistic level, the mechanisms of formation of the covalent complex between avibactam and TEM-1, an experimentally well-characterized class A beta-lactamase, using classical and quantum mechanics/molecular mechanics (QM/MM) simulations combined with metadynamics. Our simulations provide a detailed structural and energetic picture of the molecular steps leading to the formation of the avibactam/TEM-1 covalent adduct. In particular, they support a mechanism in which the rate-determining step is the water-assisted Glu166 deprotonation by Ser70. In this mechanistic framework, the predicted activation energy is in good agreement with experimental kinetic measurements. Additionally, our simulations highlight the important role of Lys73 in assisting the Ser70 and Ser130 deprotonations. While based on the specific case of the avibactam/TEM-1, the simple protocol we present here can be immediately extended and applied to the study of covalent complex formation in different enzyme-inhibitor pairs. © 2014 American Chemical Society.
No
English
Settore CHIM/08 - Chimica Farmaceutica
Articolo
Esperti anonimi
Ricerca di base
Pubblicazione scientifica
lug-2014
American Chemical Society
53
31
5174
5185
12
Pubblicato
Periodico con rilevanza internazionale
Aderisco
info:eu-repo/semantics/article
Inactivation of TEM-1 by avibactam (NXL-104): Insights from quantum mechanics/molecular mechanics metadynamics simulations / J. Sgrignani, G. Grazioso, M. De Amici, G. Colombo. - In: BIOCHEMISTRY. - ISSN 0006-2960. - 53:31(2014 Jul), pp. 5174-5185. [10.1021/bi500589x]
reserved
Prodotti della ricerca::01 - Articolo su periodico
4
262
Article (author)
Periodico con Impact Factor
J. Sgrignani, G. Grazioso, M. De Amici, G. Colombo
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/238778
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