Cargando…

Expanding Knowledge of Methylotrophic Capacity: Structure and Properties of the Rough-Type Lipopolysaccharide from Methylobacterium extorquens and Its Role on Membrane Resistance to Methanol

[Image: see text] The ability of Methylobacterium extorquens to grow on methanol as the sole carbon and energy source has been the object of intense research activity. Unquestionably, the bacterial cell envelope serves as a defensive barrier against such an environmental stressor, with a decisive ro...

Descripción completa

Detalles Bibliográficos
Autores principales: Di Lorenzo, Flaviana, Nicolardi, Simone, Marchetti, Roberta, Vanacore, Adele, Gallucci, Noemi, Duda, Katarzyna, Nieto Fabregat, Ferran, Nguyen, Ha Ngoc Anh, Gully, Djamel, Saenz, James, Giraud, Eric, Paduano, Luigi, Molinaro, Antonio, D’Errico, Gerardino, Silipo, Alba
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10052234/
https://www.ncbi.nlm.nih.gov/pubmed/37006758
http://dx.doi.org/10.1021/jacsau.3c00025
_version_ 1785015112229191680
author Di Lorenzo, Flaviana
Nicolardi, Simone
Marchetti, Roberta
Vanacore, Adele
Gallucci, Noemi
Duda, Katarzyna
Nieto Fabregat, Ferran
Nguyen, Ha Ngoc Anh
Gully, Djamel
Saenz, James
Giraud, Eric
Paduano, Luigi
Molinaro, Antonio
D’Errico, Gerardino
Silipo, Alba
author_facet Di Lorenzo, Flaviana
Nicolardi, Simone
Marchetti, Roberta
Vanacore, Adele
Gallucci, Noemi
Duda, Katarzyna
Nieto Fabregat, Ferran
Nguyen, Ha Ngoc Anh
Gully, Djamel
Saenz, James
Giraud, Eric
Paduano, Luigi
Molinaro, Antonio
D’Errico, Gerardino
Silipo, Alba
author_sort Di Lorenzo, Flaviana
collection PubMed
description [Image: see text] The ability of Methylobacterium extorquens to grow on methanol as the sole carbon and energy source has been the object of intense research activity. Unquestionably, the bacterial cell envelope serves as a defensive barrier against such an environmental stressor, with a decisive role played by the membrane lipidome, which is crucial for stress resistance. However, the chemistry and the function of the main constituent of the M. extorquens outer membrane, the lipopolysaccharide (LPS), is still undefined. Here, we show that M. extorquens produces a rough-type LPS with an uncommon, non-phosphorylated, and extensively O-methylated core oligosaccharide, densely substituted with negatively charged residues in the inner region, including novel monosaccharide derivatives such as O-methylated Kdo/Ko units. Lipid A is composed of a non-phosphorylated trisaccharide backbone with a distinctive, low acylation pattern; indeed, the sugar skeleton was decorated with three acyl moieties and a secondary very long chain fatty acid, in turn substituted by a 3-O-acetyl-butyrate residue. Spectroscopic, conformational, and biophysical analyses on M. extorquens LPS highlighted how structural and tridimensional features impact the molecular organization of the outer membrane. Furthermore, these chemical features also impacted and improved membrane resistance in the presence of methanol, thus regulating membrane ordering and dynamics.
format Online
Article
Text
id pubmed-10052234
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-100522342023-03-30 Expanding Knowledge of Methylotrophic Capacity: Structure and Properties of the Rough-Type Lipopolysaccharide from Methylobacterium extorquens and Its Role on Membrane Resistance to Methanol Di Lorenzo, Flaviana Nicolardi, Simone Marchetti, Roberta Vanacore, Adele Gallucci, Noemi Duda, Katarzyna Nieto Fabregat, Ferran Nguyen, Ha Ngoc Anh Gully, Djamel Saenz, James Giraud, Eric Paduano, Luigi Molinaro, Antonio D’Errico, Gerardino Silipo, Alba JACS Au [Image: see text] The ability of Methylobacterium extorquens to grow on methanol as the sole carbon and energy source has been the object of intense research activity. Unquestionably, the bacterial cell envelope serves as a defensive barrier against such an environmental stressor, with a decisive role played by the membrane lipidome, which is crucial for stress resistance. However, the chemistry and the function of the main constituent of the M. extorquens outer membrane, the lipopolysaccharide (LPS), is still undefined. Here, we show that M. extorquens produces a rough-type LPS with an uncommon, non-phosphorylated, and extensively O-methylated core oligosaccharide, densely substituted with negatively charged residues in the inner region, including novel monosaccharide derivatives such as O-methylated Kdo/Ko units. Lipid A is composed of a non-phosphorylated trisaccharide backbone with a distinctive, low acylation pattern; indeed, the sugar skeleton was decorated with three acyl moieties and a secondary very long chain fatty acid, in turn substituted by a 3-O-acetyl-butyrate residue. Spectroscopic, conformational, and biophysical analyses on M. extorquens LPS highlighted how structural and tridimensional features impact the molecular organization of the outer membrane. Furthermore, these chemical features also impacted and improved membrane resistance in the presence of methanol, thus regulating membrane ordering and dynamics. American Chemical Society 2023-03-09 /pmc/articles/PMC10052234/ /pubmed/37006758 http://dx.doi.org/10.1021/jacsau.3c00025 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Di Lorenzo, Flaviana
Nicolardi, Simone
Marchetti, Roberta
Vanacore, Adele
Gallucci, Noemi
Duda, Katarzyna
Nieto Fabregat, Ferran
Nguyen, Ha Ngoc Anh
Gully, Djamel
Saenz, James
Giraud, Eric
Paduano, Luigi
Molinaro, Antonio
D’Errico, Gerardino
Silipo, Alba
Expanding Knowledge of Methylotrophic Capacity: Structure and Properties of the Rough-Type Lipopolysaccharide from Methylobacterium extorquens and Its Role on Membrane Resistance to Methanol
title Expanding Knowledge of Methylotrophic Capacity: Structure and Properties of the Rough-Type Lipopolysaccharide from Methylobacterium extorquens and Its Role on Membrane Resistance to Methanol
title_full Expanding Knowledge of Methylotrophic Capacity: Structure and Properties of the Rough-Type Lipopolysaccharide from Methylobacterium extorquens and Its Role on Membrane Resistance to Methanol
title_fullStr Expanding Knowledge of Methylotrophic Capacity: Structure and Properties of the Rough-Type Lipopolysaccharide from Methylobacterium extorquens and Its Role on Membrane Resistance to Methanol
title_full_unstemmed Expanding Knowledge of Methylotrophic Capacity: Structure and Properties of the Rough-Type Lipopolysaccharide from Methylobacterium extorquens and Its Role on Membrane Resistance to Methanol
title_short Expanding Knowledge of Methylotrophic Capacity: Structure and Properties of the Rough-Type Lipopolysaccharide from Methylobacterium extorquens and Its Role on Membrane Resistance to Methanol
title_sort expanding knowledge of methylotrophic capacity: structure and properties of the rough-type lipopolysaccharide from methylobacterium extorquens and its role on membrane resistance to methanol
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10052234/
https://www.ncbi.nlm.nih.gov/pubmed/37006758
http://dx.doi.org/10.1021/jacsau.3c00025
work_keys_str_mv AT dilorenzoflaviana expandingknowledgeofmethylotrophiccapacitystructureandpropertiesoftheroughtypelipopolysaccharidefrommethylobacteriumextorquensanditsroleonmembraneresistancetomethanol
AT nicolardisimone expandingknowledgeofmethylotrophiccapacitystructureandpropertiesoftheroughtypelipopolysaccharidefrommethylobacteriumextorquensanditsroleonmembraneresistancetomethanol
AT marchettiroberta expandingknowledgeofmethylotrophiccapacitystructureandpropertiesoftheroughtypelipopolysaccharidefrommethylobacteriumextorquensanditsroleonmembraneresistancetomethanol
AT vanacoreadele expandingknowledgeofmethylotrophiccapacitystructureandpropertiesoftheroughtypelipopolysaccharidefrommethylobacteriumextorquensanditsroleonmembraneresistancetomethanol
AT galluccinoemi expandingknowledgeofmethylotrophiccapacitystructureandpropertiesoftheroughtypelipopolysaccharidefrommethylobacteriumextorquensanditsroleonmembraneresistancetomethanol
AT dudakatarzyna expandingknowledgeofmethylotrophiccapacitystructureandpropertiesoftheroughtypelipopolysaccharidefrommethylobacteriumextorquensanditsroleonmembraneresistancetomethanol
AT nietofabregatferran expandingknowledgeofmethylotrophiccapacitystructureandpropertiesoftheroughtypelipopolysaccharidefrommethylobacteriumextorquensanditsroleonmembraneresistancetomethanol
AT nguyenhangocanh expandingknowledgeofmethylotrophiccapacitystructureandpropertiesoftheroughtypelipopolysaccharidefrommethylobacteriumextorquensanditsroleonmembraneresistancetomethanol
AT gullydjamel expandingknowledgeofmethylotrophiccapacitystructureandpropertiesoftheroughtypelipopolysaccharidefrommethylobacteriumextorquensanditsroleonmembraneresistancetomethanol
AT saenzjames expandingknowledgeofmethylotrophiccapacitystructureandpropertiesoftheroughtypelipopolysaccharidefrommethylobacteriumextorquensanditsroleonmembraneresistancetomethanol
AT girauderic expandingknowledgeofmethylotrophiccapacitystructureandpropertiesoftheroughtypelipopolysaccharidefrommethylobacteriumextorquensanditsroleonmembraneresistancetomethanol
AT paduanoluigi expandingknowledgeofmethylotrophiccapacitystructureandpropertiesoftheroughtypelipopolysaccharidefrommethylobacteriumextorquensanditsroleonmembraneresistancetomethanol
AT molinaroantonio expandingknowledgeofmethylotrophiccapacitystructureandpropertiesoftheroughtypelipopolysaccharidefrommethylobacteriumextorquensanditsroleonmembraneresistancetomethanol
AT derricogerardino expandingknowledgeofmethylotrophiccapacitystructureandpropertiesoftheroughtypelipopolysaccharidefrommethylobacteriumextorquensanditsroleonmembraneresistancetomethanol
AT silipoalba expandingknowledgeofmethylotrophiccapacitystructureandpropertiesoftheroughtypelipopolysaccharidefrommethylobacteriumextorquensanditsroleonmembraneresistancetomethanol