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Artículo

Gating interactions steer loop conformational changes in the active site of the L1 metallo-β-lactamase

Zhao, Zhuoran; Shen, Xiayu; Chen, Shuang; Gu, Jing; Wang, Haun; Mojica, Maria F.; Samanta, Moumita; Bhowmik, Debsindhu; Vila, Alejandro JoseIcon ; Bonomo, Robert A.; Haider, Shozeb
Fecha de publicación: 02/2023
Editorial: eLife Sciences Publications
Revista: eLife
ISSN: 2050-084X
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Biofísica

Resumen

β-Lactam antibiotics are the most important and widely used antibacterial agents across the world. However, the widespread dissemination of β-lactamases among pathogenic bacteria limits the efficacy of β-lactam antibiotics. This has created a major public health crisis. The use of β-lactamase inhibitors has proven useful in restoring the activity of β-lactam antibiotics, yet, effective clinically approved inhibitors against class B metallo-β-lactamases are not available. L1, a class B3 enzyme expressed by Stenotrophomonas maltophilia, is a significant contributor to the β-lactam resistance displayed by this opportunistic pathogen. Structurally, L1 is a tetramer with two elongated loops, α3-β7 and β12-α5, present around the active site of each monomer. Residues in these two loops influence substrate/inhibitor binding. To study how the conformational changes of the elongated loops affect the active site in each monomer, enhanced sampling molecular dynamics simulations were performed, Markov State Models were built, and convolutional variational autoencoder-based deep learning was applied. The key identified residues (D150a, H151, P225, Y227, and R236) were mutated and the activity of the generated L1 variants was evaluated in cell-based experiments. The results demonstrate that there are extremely significant gating interactions between α3-β7 and β12-α5 loops. Taken together, the gating interactions with the conformational changes of the key residues play an important role in the structural remodeling of the active site. These observations offer insights into the potential for novel drug development exploiting these gating interactions.
Palabras clave: L1 metallo-b-lactamase , Stenotrophomonas maltophilia , anti-bacterial resistance , molecular biophysics
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info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution-NonCommercial-ShareAlike 2.5 Unported (CC BY-NC-SA 2.5)
Identificadores
URI: http://hdl.handle.net/11336/233278
DOI: http://dx.doi.org/10.7554/eLife.83928
Colecciones
Articulos(IBR)
Articulos de INST.DE BIOLOGIA MOLECULAR Y CELULAR DE ROSARIO
Citación
Zhao, Zhuoran; Shen, Xiayu; Chen, Shuang; Gu, Jing; Wang, Haun; et al.; Gating interactions steer loop conformational changes in the active site of the L1 metallo-β-lactamase; eLife Sciences Publications; eLife; 12; 2-2023; 1-18
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