Dynamic interplay between the periplasmic and transmembrane domains of GspL and GspM in the type II secretion system.

The type II secretion system (T2SS) is a multiprotein nanomachine that transports folded proteins across the outer membrane of gram-negative bacteria. The molecular mechanisms that govern the secretion process remain poorly understood. The inner membrane components GspC, GspL and GspM possess a sing...

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Main Authors: Mathilde Lallemand, Frédéric H Login, Natalia Guschinskaya, Camille Pineau, Géraldine Effantin, Xavier Robert, Vladimir E Shevchik
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3815138?pdf=render
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spelling doaj-e9aca024322645a088fb0f39415501932020-11-25T00:47:03ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-01811e7956210.1371/journal.pone.0079562Dynamic interplay between the periplasmic and transmembrane domains of GspL and GspM in the type II secretion system.Mathilde LallemandFrédéric H LoginNatalia GuschinskayaCamille PineauGéraldine EffantinXavier RobertVladimir E ShevchikThe type II secretion system (T2SS) is a multiprotein nanomachine that transports folded proteins across the outer membrane of gram-negative bacteria. The molecular mechanisms that govern the secretion process remain poorly understood. The inner membrane components GspC, GspL and GspM possess a single transmembrane segment (TMS) and a large periplasmic region and they are thought to form a platform of unknown function. Here, using two-hybrid and pull-down assays we performed a systematic mapping of the GspC/GspL/GspM interaction regions in the plant pathogen Dickeya dadantii. We found that the TMS of these components interact with each other, implying a complex interaction network within the inner membrane. We also showed that the periplasmic, ferredoxin-like, domains of GspL and GspM drive homo- and heterodimerizations of these proteins. Disulfide bonding analyses revealed that the respective domain interfaces include the equivalent secondary-structure elements, suggesting alternating interactions of the periplasmic domains, L/L and M/M versus L/M. Finally, we found that displacements of the periplasmic GspM domain mediate coordinated shifts or rotations of the cognate TMS. These data suggest a plausible mechanism for signal transmission between the periplasmic and the cytoplasmic portions of the T2SS machine.http://europepmc.org/articles/PMC3815138?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Mathilde Lallemand
Frédéric H Login
Natalia Guschinskaya
Camille Pineau
Géraldine Effantin
Xavier Robert
Vladimir E Shevchik
spellingShingle Mathilde Lallemand
Frédéric H Login
Natalia Guschinskaya
Camille Pineau
Géraldine Effantin
Xavier Robert
Vladimir E Shevchik
Dynamic interplay between the periplasmic and transmembrane domains of GspL and GspM in the type II secretion system.
PLoS ONE
author_facet Mathilde Lallemand
Frédéric H Login
Natalia Guschinskaya
Camille Pineau
Géraldine Effantin
Xavier Robert
Vladimir E Shevchik
author_sort Mathilde Lallemand
title Dynamic interplay between the periplasmic and transmembrane domains of GspL and GspM in the type II secretion system.
title_short Dynamic interplay between the periplasmic and transmembrane domains of GspL and GspM in the type II secretion system.
title_full Dynamic interplay between the periplasmic and transmembrane domains of GspL and GspM in the type II secretion system.
title_fullStr Dynamic interplay between the periplasmic and transmembrane domains of GspL and GspM in the type II secretion system.
title_full_unstemmed Dynamic interplay between the periplasmic and transmembrane domains of GspL and GspM in the type II secretion system.
title_sort dynamic interplay between the periplasmic and transmembrane domains of gspl and gspm in the type ii secretion system.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description The type II secretion system (T2SS) is a multiprotein nanomachine that transports folded proteins across the outer membrane of gram-negative bacteria. The molecular mechanisms that govern the secretion process remain poorly understood. The inner membrane components GspC, GspL and GspM possess a single transmembrane segment (TMS) and a large periplasmic region and they are thought to form a platform of unknown function. Here, using two-hybrid and pull-down assays we performed a systematic mapping of the GspC/GspL/GspM interaction regions in the plant pathogen Dickeya dadantii. We found that the TMS of these components interact with each other, implying a complex interaction network within the inner membrane. We also showed that the periplasmic, ferredoxin-like, domains of GspL and GspM drive homo- and heterodimerizations of these proteins. Disulfide bonding analyses revealed that the respective domain interfaces include the equivalent secondary-structure elements, suggesting alternating interactions of the periplasmic domains, L/L and M/M versus L/M. Finally, we found that displacements of the periplasmic GspM domain mediate coordinated shifts or rotations of the cognate TMS. These data suggest a plausible mechanism for signal transmission between the periplasmic and the cytoplasmic portions of the T2SS machine.
url http://europepmc.org/articles/PMC3815138?pdf=render
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