Structural characterization of outer membrane components of the type IV pili system in pathogenic Neisseria.

Structures of the type IV pili secretin complexes from Neisseria gonorrhoeae and Neisseria meningitidis, embedded in outer membranes were investigated by transmission electron microscopy. Single particle averaging revealed additional domains not observed previously. Secretin complexes of N. gonorrho...

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Main Authors: Samta Jain, Katarzyna B Mościcka, Martine P Bos, Emilia Pachulec, Marc C A Stuart, Wilko Keegstra, Egbert J Boekema, Chris van der Does
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3031610?pdf=render
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spelling doaj-296b391fe7494e0197b75b5c80e022b72020-11-25T02:39:29ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-0161e1662410.1371/journal.pone.0016624Structural characterization of outer membrane components of the type IV pili system in pathogenic Neisseria.Samta JainKatarzyna B MościckaMartine P BosEmilia PachulecMarc C A StuartWilko KeegstraEgbert J BoekemaChris van der DoesStructures of the type IV pili secretin complexes from Neisseria gonorrhoeae and Neisseria meningitidis, embedded in outer membranes were investigated by transmission electron microscopy. Single particle averaging revealed additional domains not observed previously. Secretin complexes of N. gonorrhoeae showed a double ring structure with a 14-15-fold symmetry in the central ring, and a 14-fold symmetry of the peripheral ring with 7 spikes protruding. In secretin complexes of N. meningitidis, the spikes were absent and the peripheral ring was partly or completely lacking. When present, it had a 19-fold symmetry. The structures of the complexes in several pil mutants were determined. Structures obtained from the pilC1/C2 adhesin and the pilW minor pilin deletion strains were similar to wild-type, whereas deletion of the homologue of N. meningitidis PilW resulted in the absence of secretin structures. Remarkably, the pilE pilin subunit and pilP lipoprotein deletion mutants showed a change in the symmetry of the peripheral ring from 14 to 19 and loss of spikes. The pilF ATPase mutant also lost the spikes, but maintained 14-fold symmetry. These results show that secretin complexes contain previously unidentified large and flexible extra domains with a probable role in stabilization or assembly of type IV pili.http://europepmc.org/articles/PMC3031610?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Samta Jain
Katarzyna B Mościcka
Martine P Bos
Emilia Pachulec
Marc C A Stuart
Wilko Keegstra
Egbert J Boekema
Chris van der Does
spellingShingle Samta Jain
Katarzyna B Mościcka
Martine P Bos
Emilia Pachulec
Marc C A Stuart
Wilko Keegstra
Egbert J Boekema
Chris van der Does
Structural characterization of outer membrane components of the type IV pili system in pathogenic Neisseria.
PLoS ONE
author_facet Samta Jain
Katarzyna B Mościcka
Martine P Bos
Emilia Pachulec
Marc C A Stuart
Wilko Keegstra
Egbert J Boekema
Chris van der Does
author_sort Samta Jain
title Structural characterization of outer membrane components of the type IV pili system in pathogenic Neisseria.
title_short Structural characterization of outer membrane components of the type IV pili system in pathogenic Neisseria.
title_full Structural characterization of outer membrane components of the type IV pili system in pathogenic Neisseria.
title_fullStr Structural characterization of outer membrane components of the type IV pili system in pathogenic Neisseria.
title_full_unstemmed Structural characterization of outer membrane components of the type IV pili system in pathogenic Neisseria.
title_sort structural characterization of outer membrane components of the type iv pili system in pathogenic neisseria.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description Structures of the type IV pili secretin complexes from Neisseria gonorrhoeae and Neisseria meningitidis, embedded in outer membranes were investigated by transmission electron microscopy. Single particle averaging revealed additional domains not observed previously. Secretin complexes of N. gonorrhoeae showed a double ring structure with a 14-15-fold symmetry in the central ring, and a 14-fold symmetry of the peripheral ring with 7 spikes protruding. In secretin complexes of N. meningitidis, the spikes were absent and the peripheral ring was partly or completely lacking. When present, it had a 19-fold symmetry. The structures of the complexes in several pil mutants were determined. Structures obtained from the pilC1/C2 adhesin and the pilW minor pilin deletion strains were similar to wild-type, whereas deletion of the homologue of N. meningitidis PilW resulted in the absence of secretin structures. Remarkably, the pilE pilin subunit and pilP lipoprotein deletion mutants showed a change in the symmetry of the peripheral ring from 14 to 19 and loss of spikes. The pilF ATPase mutant also lost the spikes, but maintained 14-fold symmetry. These results show that secretin complexes contain previously unidentified large and flexible extra domains with a probable role in stabilization or assembly of type IV pili.
url http://europepmc.org/articles/PMC3031610?pdf=render
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