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Folding and trimerization of signal sequence-less mature TolC in the cytoplasm of Escherichia coli

TolC is a multifunctional outer-membrane protein (OMP) of Escherichia coli that folds into a unique α/β-barrel structure. Previous studies have shown that unlike the biogenesis of β-barrel OMPs, such as porins, TolC assembles independently from known periplasmic folding factors. Yet, the assembly of...

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Autores principales: Masi, Muriel, Duret, Guillaume, Delcour, Anne H., Misra, Rajeev
Formato: Texto
Lenguaje:English
Publicado: Microbiology Society 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2885749/
https://www.ncbi.nlm.nih.gov/pubmed/19383696
http://dx.doi.org/10.1099/mic.0.027219-0
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author Masi, Muriel
Duret, Guillaume
Delcour, Anne H.
Misra, Rajeev
author_facet Masi, Muriel
Duret, Guillaume
Delcour, Anne H.
Misra, Rajeev
author_sort Masi, Muriel
collection PubMed
description TolC is a multifunctional outer-membrane protein (OMP) of Escherichia coli that folds into a unique α/β-barrel structure. Previous studies have shown that unlike the biogenesis of β-barrel OMPs, such as porins, TolC assembles independently from known periplasmic folding factors. Yet, the assembly of TolC, like that of β-barrel OMPs, is dependent on BamA and BamD, two essential components of the β-barrel OMP assembly machinery. We have investigated the folding properties and cellular trafficking of a TolC derivative that lacks the entire signal sequence (TolCΔ2–22). A significant amount of TolCΔ2–22 was found to be soluble in the cytoplasm, and a fraction of it folded and trimerized into a conformation similar to that of the normal outer membrane-localized TolC protein. Some TolCΔ2–22 was found to associate with membranes, but failed to assume a wild-type-like folded conformation. The null phenotype of TolCΔ2–22 was exploited to isolate suppressor mutations, the majority of which mapped in secY. In the secY suppressor background, TolCΔ2–22 resumed normal function and folded like wild-type TolC. Proper membrane insertion could not be achieved upon in vitro incubation of cytoplasmically folded TolCΔ2–22 with purified outer membrane vesicles, showing that even though TolC is intrinsically capable of folding and trimerization, for successful integration into the outer membrane these events need to be tightly coupled to the insertion process, which is mediated by the Bam machinery. Genetic and biochemical data attribute the unique folding and assembly pathways of TolC to its large soluble α-helical domain.
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spelling pubmed-28857492010-07-06 Folding and trimerization of signal sequence-less mature TolC in the cytoplasm of Escherichia coli Masi, Muriel Duret, Guillaume Delcour, Anne H. Misra, Rajeev Microbiology (Reading) Cell and Molecular Biology of Microbes TolC is a multifunctional outer-membrane protein (OMP) of Escherichia coli that folds into a unique α/β-barrel structure. Previous studies have shown that unlike the biogenesis of β-barrel OMPs, such as porins, TolC assembles independently from known periplasmic folding factors. Yet, the assembly of TolC, like that of β-barrel OMPs, is dependent on BamA and BamD, two essential components of the β-barrel OMP assembly machinery. We have investigated the folding properties and cellular trafficking of a TolC derivative that lacks the entire signal sequence (TolCΔ2–22). A significant amount of TolCΔ2–22 was found to be soluble in the cytoplasm, and a fraction of it folded and trimerized into a conformation similar to that of the normal outer membrane-localized TolC protein. Some TolCΔ2–22 was found to associate with membranes, but failed to assume a wild-type-like folded conformation. The null phenotype of TolCΔ2–22 was exploited to isolate suppressor mutations, the majority of which mapped in secY. In the secY suppressor background, TolCΔ2–22 resumed normal function and folded like wild-type TolC. Proper membrane insertion could not be achieved upon in vitro incubation of cytoplasmically folded TolCΔ2–22 with purified outer membrane vesicles, showing that even though TolC is intrinsically capable of folding and trimerization, for successful integration into the outer membrane these events need to be tightly coupled to the insertion process, which is mediated by the Bam machinery. Genetic and biochemical data attribute the unique folding and assembly pathways of TolC to its large soluble α-helical domain. Microbiology Society 2009-06 /pmc/articles/PMC2885749/ /pubmed/19383696 http://dx.doi.org/10.1099/mic.0.027219-0 Text en Copyright © 2009, SGM
spellingShingle Cell and Molecular Biology of Microbes
Masi, Muriel
Duret, Guillaume
Delcour, Anne H.
Misra, Rajeev
Folding and trimerization of signal sequence-less mature TolC in the cytoplasm of Escherichia coli
title Folding and trimerization of signal sequence-less mature TolC in the cytoplasm of Escherichia coli
title_full Folding and trimerization of signal sequence-less mature TolC in the cytoplasm of Escherichia coli
title_fullStr Folding and trimerization of signal sequence-less mature TolC in the cytoplasm of Escherichia coli
title_full_unstemmed Folding and trimerization of signal sequence-less mature TolC in the cytoplasm of Escherichia coli
title_short Folding and trimerization of signal sequence-less mature TolC in the cytoplasm of Escherichia coli
title_sort folding and trimerization of signal sequence-less mature tolc in the cytoplasm of escherichia coli
topic Cell and Molecular Biology of Microbes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2885749/
https://www.ncbi.nlm.nih.gov/pubmed/19383696
http://dx.doi.org/10.1099/mic.0.027219-0
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