Artículo
In-cell kinetic stability is an essential trait in metallo-β-lactamase evolution
Gonzalez, Lisandro Javier
; Bahr, Guillermo
; Gonzalez, Mariano Martin
; Bonomo, Robert A.; Vila, Alejandro Jose




Fecha de publicación:
05/2023
Editorial:
Nature Publishing Group
Revista:
Nature Chemical Biology
ISSN:
1552-4450
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Protein stability is an essential property for biological function. In contrast to the vast knowledge on protein stability in vitro, little is known about the factors governing in-cell stability. Here we show that the metallo-β-lactamase (MBL) New Delhi MBL-1 (NDM-1) is a kinetically unstable protein on metal restriction that has evolved by acquiring different biochemical traits that optimize its in-cell stability. The nonmetalated (apo) NDM-1 is degraded by the periplasmic protease Prc that recognizes its partially unstructured C-terminal domain. Zn(II) binding renders the protein refractory to degradation by quenching the flexibility of this region. Membrane anchoring makes apo-NDM-1 less accessible to Prc and protects it from DegP, a cellular protease degrading misfolded, nonmetalated NDM-1 precursors. NDM variants accumulate substitutions at the C terminus that quench its flexibility, enhancing their kinetic stability and bypassing proteolysis. These observations link MBL-mediated resistance with the essential periplasmic metabolism, highlighting the importance of the cellular protein homeostasis.
Palabras clave:
BACTERIA
,
METALLOPROTEINS
,
METALS
,
NMR SPECTROSCOPY
,
PROTEIN FOLDING
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Identificadores
Colecciones
Articulos(IBR)
Articulos de INST.DE BIOLOGIA MOLECULAR Y CELULAR DE ROSARIO
Articulos de INST.DE BIOLOGIA MOLECULAR Y CELULAR DE ROSARIO
Citación
Gonzalez, Lisandro Javier; Bahr, Guillermo; Gonzalez, Mariano Martin; Bonomo, Robert A.; Vila, Alejandro Jose; In-cell kinetic stability is an essential trait in metallo-β-lactamase evolution; Nature Publishing Group; Nature Chemical Biology; 19; 9; 5-2023; 1116-1126
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