Nutrient Sensing and Biofilm Modulation: The Example of L-arginine in .

Chiara Scribani Rossi, Laura Barrientos-Moreno, Alessio Paone, Francesca Cutruzzolà, Alessandro Paiardini, Manuel Espinosa-Urgel, Serena Rinaldo

Journal: International journal of molecular sciences 2022;23(8):4386

PMID: 35457206

Abstract

Bacterial biofilm represents a multicellular community embedded within an extracellular matrix attached to a surface. This lifestyle confers to bacterial cells protection against hostile environments, such as antibiotic treatment and host immune response in case of infections. The genus is characterised by species producing strong biofilms difficult to be eradicated and by an extraordinary metabolic versatility which may support energy and carbon/nitrogen assimilation under multiple environmental conditions. Nutrient availability can be perceived by a biofilm which, in turn, readapts its metabolism to finally tune its own formation and dispersion. A growing number of papers is now focusing on the mechanism of nutrient perception as a possible strategy to weaken the biofilm barrier by environmental cues. One of the most important nutrients is amino acid L-arginine, a crucial metabolite sustaining bacterial growth both as a carbon and a nitrogen source. Under low-oxygen conditions, L-arginine may also serve for ATP production, thus allowing bacteria to survive in anaerobic environments. L-arginine has been associated with biofilms, virulence, and antibiotic resistance. L-arginine is also a key precursor of regulatory molecules such as polyamines, whose involvement in biofilm homeostasis is reported. Given the biomedical and biotechnological relevance of biofilm control, the state of the art on the effects mediated by the L-arginine nutrient on biofilm modulation is presented, with a special focus on the biofilm. Possible biotechnological and biomedical applications are also discussed.

Address: Laboratory Affiliated to Istituto Pasteur Italia, Fondazione Cenci Bolognetti-Department of Biochemical Sciences "A. Rossi Fanelli", Sapienza University of Rome, 00185 Rome, Italy.; National Biofilms Innovation Centre, Biodiscovery Institute-School of Life Sciences, University of Nottingham, Nottingham NG7 2RD, UK.; Department of Biotechnology and Environmental Protection, Estación Experimental del Zaidin, CSIC, 18008 Granada, Spain.
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