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The lipopolysaccharide-transporter complex LptB(2)FG also displays adenylate kinase activity in vitro dependent on the binding partners LptC/LptA

Lipopolysaccharide (LPS) is an essential glycolipid that covers the surface of gram-negative bacteria. The transport of LPS involves a dedicated seven-protein transporter system called the lipopolysaccharide transport system (Lpt) machinery that physically spans the entire cell envelope. The LptB(2)...

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Autores principales: Baeta, Tiago, Giandoreggio-Barranco, Karine, Ayala, Isabel, Moura, Elisabete C.C.M., Sperandeo, Paola, Polissi, Alessandra, Simorre, Jean-Pierre, Laguri, Cedric
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8633020/
https://www.ncbi.nlm.nih.gov/pubmed/34673027
http://dx.doi.org/10.1016/j.jbc.2021.101313
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author Baeta, Tiago
Giandoreggio-Barranco, Karine
Ayala, Isabel
Moura, Elisabete C.C.M.
Sperandeo, Paola
Polissi, Alessandra
Simorre, Jean-Pierre
Laguri, Cedric
author_facet Baeta, Tiago
Giandoreggio-Barranco, Karine
Ayala, Isabel
Moura, Elisabete C.C.M.
Sperandeo, Paola
Polissi, Alessandra
Simorre, Jean-Pierre
Laguri, Cedric
author_sort Baeta, Tiago
collection PubMed
description Lipopolysaccharide (LPS) is an essential glycolipid that covers the surface of gram-negative bacteria. The transport of LPS involves a dedicated seven-protein transporter system called the lipopolysaccharide transport system (Lpt) machinery that physically spans the entire cell envelope. The LptB(2)FG complex is an ABC transporter that hydrolyzes ATP to extract LPS from the inner membrane for transport to the outer membrane. Here, we extracted LptB(2)FG directly from the inner membrane with its original lipid environment using styrene-maleic acid polymers. We found that styrene-maleic acid polymers–LptB(2)FG in nanodiscs display not only ATPase activity but also a previously uncharacterized adenylate kinase (AK) activity, as it catalyzed phosphotransfer between two ADP molecules to generate ATP and AMP. The ATPase and AK activities of LptB(2)FG were both stimulated by the interaction on the periplasmic side with the periplasmic LPS transport proteins LptC and LptA and inhibited by the presence of the LptC transmembrane helix. We determined that the isolated ATPase module (LptB) had weak AK activity in the absence of transmembrane proteins LptF and LptG, and one mutation in LptB that weakens its affinity for ADP led to AK activity similar to that of fully assembled complex. Thus, we conclude that LptB(2)FG is capable of producing ATP from ADP, depending on the assembly of the Lpt bridge, and that this AK activity might be important to ensure efficient LPS transport in the fully assembled Lpt system.
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spelling pubmed-86330202021-12-06 The lipopolysaccharide-transporter complex LptB(2)FG also displays adenylate kinase activity in vitro dependent on the binding partners LptC/LptA Baeta, Tiago Giandoreggio-Barranco, Karine Ayala, Isabel Moura, Elisabete C.C.M. Sperandeo, Paola Polissi, Alessandra Simorre, Jean-Pierre Laguri, Cedric J Biol Chem Accelerated Communication Lipopolysaccharide (LPS) is an essential glycolipid that covers the surface of gram-negative bacteria. The transport of LPS involves a dedicated seven-protein transporter system called the lipopolysaccharide transport system (Lpt) machinery that physically spans the entire cell envelope. The LptB(2)FG complex is an ABC transporter that hydrolyzes ATP to extract LPS from the inner membrane for transport to the outer membrane. Here, we extracted LptB(2)FG directly from the inner membrane with its original lipid environment using styrene-maleic acid polymers. We found that styrene-maleic acid polymers–LptB(2)FG in nanodiscs display not only ATPase activity but also a previously uncharacterized adenylate kinase (AK) activity, as it catalyzed phosphotransfer between two ADP molecules to generate ATP and AMP. The ATPase and AK activities of LptB(2)FG were both stimulated by the interaction on the periplasmic side with the periplasmic LPS transport proteins LptC and LptA and inhibited by the presence of the LptC transmembrane helix. We determined that the isolated ATPase module (LptB) had weak AK activity in the absence of transmembrane proteins LptF and LptG, and one mutation in LptB that weakens its affinity for ADP led to AK activity similar to that of fully assembled complex. Thus, we conclude that LptB(2)FG is capable of producing ATP from ADP, depending on the assembly of the Lpt bridge, and that this AK activity might be important to ensure efficient LPS transport in the fully assembled Lpt system. American Society for Biochemistry and Molecular Biology 2021-10-19 /pmc/articles/PMC8633020/ /pubmed/34673027 http://dx.doi.org/10.1016/j.jbc.2021.101313 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Accelerated Communication
Baeta, Tiago
Giandoreggio-Barranco, Karine
Ayala, Isabel
Moura, Elisabete C.C.M.
Sperandeo, Paola
Polissi, Alessandra
Simorre, Jean-Pierre
Laguri, Cedric
The lipopolysaccharide-transporter complex LptB(2)FG also displays adenylate kinase activity in vitro dependent on the binding partners LptC/LptA
title The lipopolysaccharide-transporter complex LptB(2)FG also displays adenylate kinase activity in vitro dependent on the binding partners LptC/LptA
title_full The lipopolysaccharide-transporter complex LptB(2)FG also displays adenylate kinase activity in vitro dependent on the binding partners LptC/LptA
title_fullStr The lipopolysaccharide-transporter complex LptB(2)FG also displays adenylate kinase activity in vitro dependent on the binding partners LptC/LptA
title_full_unstemmed The lipopolysaccharide-transporter complex LptB(2)FG also displays adenylate kinase activity in vitro dependent on the binding partners LptC/LptA
title_short The lipopolysaccharide-transporter complex LptB(2)FG also displays adenylate kinase activity in vitro dependent on the binding partners LptC/LptA
title_sort lipopolysaccharide-transporter complex lptb(2)fg also displays adenylate kinase activity in vitro dependent on the binding partners lptc/lpta
topic Accelerated Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8633020/
https://www.ncbi.nlm.nih.gov/pubmed/34673027
http://dx.doi.org/10.1016/j.jbc.2021.101313
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