IBR   13079
INSTITUTO DE BIOLOGIA MOLECULAR Y CELULAR DE ROSARIO
Unidad Ejecutora - UE
artículos
Título:
Bacterial signaling systems as platforms for rational design of new generations of biosensors
Autor/es:
SUSANA K. CHECA; MATIAS D. ZURBRIGGEN; FERNANDO C. SONCINI
Revista:
CURRENT OPINION IN BIOTECHNOLOGY
Editorial:
CURRENT BIOLOGY LTD
Referencias:
Lugar: Londres; Año: 2012 vol. 23 p. 766 - 772
ISSN:
0958-1669
Resumen:
Bacterial signal-responsive regulatory circuits have been employed as platform to design and construct whole-cell bacterial biosensors for reporting toxicity. A new generation of biosensors with improved performance and a wide application range has emerged after the application of synthetic biology concepts to biosensor design. Site-directed mutagenesis, directed evolution and domain swapping were applied to upgrade signal detection or to create novel sensor modules. Rewiring of the genetic circuits allows improving the determinations and reduces the heterogeneity of the response between individual reporter cells. Moreover, the assembly of natural or engineered modules to biosensor platforms provides innovative outputs, expanding the range of application of these devises, from monitoring toxics and bioremediation to killing targeted cells.