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Analysis of Hydroxycinnamic Acid Degradation in Agrobacterium fabrum Reveals a Coenzyme A-Dependent,Beta-Oxidative Deacetylation Pathway
Authors:Tony Campillo  Sébastien Renoud  Isabelle Kerzaon  Ludovic Vial  Jessica Baude  Vincent Gaillard  Floriant Bellvert  Cécile Chamignon  Gilles Comte  Xavier Nesme  Céline Lavire  Florence Hommais
Institution:aUniversité de Lyon, Lyon, France;bUniversité Lyon 1, Villeurbanne, France;cCNRS, UMR 5557 Ecologie Microbienne, Villeurbanne, France;dINRA, USC 1364 Ecologie Microbienne, Villeurbanne, France;eCNRS, UMR 5240 Microbiologie Adaptation et Pathogénie, Villeurbanne, France;fCNRS, FR 3023, Institut de Chimie de Lyon, Villeurbanne, France;gINSA de Lyon, Villeurbanne, France
Abstract:The soil- and rhizosphere-inhabiting bacterium Agrobacterium fabrum (genomospecies G8 of the Agrobacterium tumefaciens species complex) is known to have species-specific genes involved in ferulic acid degradation. Here, we characterized, by genetic and analytical means, intermediates of degradation as feruloyl coenzyme A (feruloyl-CoA), 4-hydroxy-3-methoxyphenyl-β-hydroxypropionyl–CoA, 4-hydroxy-3-methoxyphenyl-β-ketopropionyl–CoA, vanillic acid, and protocatechuic acid. The genes atu1416, atu1417, and atu1420 have been experimentally shown to be necessary for the degradation of ferulic acid. Moreover, the genes atu1415 and atu1421 have been experimentally demonstrated to be essential for this degradation and are proposed to encode a phenylhydroxypropionyl-CoA dehydrogenase and a 4-hydroxy-3-methoxyphenyl-β-ketopropionic acid (HMPKP)–CoA β-keto-thiolase, respectively. We thus demonstrated that the A. fabrum hydroxycinnamic degradation pathway is an original coenzyme A-dependent β-oxidative deacetylation that could also transform p-coumaric and caffeic acids. Finally, we showed that this pathway enables the metabolism of toxic compounds from plants and their use for growth, likely providing the species an ecological advantage in hydroxycinnamic-rich environments, such as plant roots or decaying plant materials.
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