Artículo
Direct binding of benzoate derivatives to two chemoreceptors with Cache sensor domains in Halomonas titanicae KHS3
Gasperotti, Ana Florencia
; Herrera Seitz, Karina
; Balmaceda, Rocio Soledad
; Prosa, Luciano M.; Jung, Kirsten; Studdert, Claudia Alicia
Fecha de publicación:
24/10/2020
Editorial:
Wiley Blackwell Publishing, Inc
Revista:
Molecular Microbiology
ISSN:
0950-382X
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Halomonas titanicae KHS3, isolated from a hydrocarbon-contaminated sea harbor in Argentina, is able to grow on aromatic hydrocarbons and displays chemotaxis toward those compounds. This behavior might contribute to the efficiency of its degradation capacity. Using high throughput screening, we identified two chemoreceptors (Htc1 and Htc2) that bind benzoate derivatives and other organic acids. Whereas Htc1 has a high affinity for benzoate (Kd 112 µM) and 2-hydroxybenzoate (Kd 83 µM), Htc2 binds 2-hydroxybenzoate with low affinity (Kd 3.25 mM), and also C3/C4 dicarboxylates. Both chemoreceptors are able to trigger a chemotactic response of E. coli cells to the specific ligands. A H. titanicae htc1 mutant has reduced chemotaxis toward benzoate, and is complemented upon expression of the corresponding receptor. Both chemoreceptors have a Cache-type sensor domain, double (Htc1) or single (Htc2), and their ability to bind aromatic compounds is reported here for the first time.
Palabras clave:
CACHE SENSOR DOMAIN
,
CHEMORECEPTORS
,
HALOMONAS
,
HYDROCARBON SENSING
,
SALICYLATE
Archivos asociados
Licencia
Identificadores
Colecciones
Articulos(IAL)
Articulos de INSTITUTO DE AGROBIOTECNOLOGIA DEL LITORAL
Articulos de INSTITUTO DE AGROBIOTECNOLOGIA DEL LITORAL
Articulos(IIB)
Articulos de INSTITUTO DE INVESTIGACIONES BIOLOGICAS
Articulos de INSTITUTO DE INVESTIGACIONES BIOLOGICAS
Citación
Gasperotti, Ana Florencia; Herrera Seitz, Karina; Balmaceda, Rocio Soledad; Prosa, Luciano M.; Jung, Kirsten; et al.; Direct binding of benzoate derivatives to two chemoreceptors with Cache sensor domains in Halomonas titanicae KHS3; Wiley Blackwell Publishing, Inc; Molecular Microbiology; 115; 4; 24-10-2020; 672-683
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