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Spontaneous non-canonical assembly of CcmK hexameric components from β-carboxysome shells of cyanobacteria

CcmK proteins are major constituents of icosahedral shells of β-carboxysomes, a bacterial microcompartment that plays a key role for CO(2) fixation in nature. Supported by the characterization of bidimensional (2D) layers of packed CcmK hexamers in crystal and electron microscopy structures, CcmK ar...

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Autores principales: Garcia-Alles, Luis F., Lesniewska, Eric, Root, Katharina, Aubry, Nathalie, Pocholle, Nicolas, Mendoza, Carlos I., Bourillot, Eric, Barylyuk, Konstantin, Pompon, Denis, Zenobi, Renato, Reguera, David, Truan, Gilles
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5608322/
https://www.ncbi.nlm.nih.gov/pubmed/28934279
http://dx.doi.org/10.1371/journal.pone.0185109
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author Garcia-Alles, Luis F.
Lesniewska, Eric
Root, Katharina
Aubry, Nathalie
Pocholle, Nicolas
Mendoza, Carlos I.
Bourillot, Eric
Barylyuk, Konstantin
Pompon, Denis
Zenobi, Renato
Reguera, David
Truan, Gilles
author_facet Garcia-Alles, Luis F.
Lesniewska, Eric
Root, Katharina
Aubry, Nathalie
Pocholle, Nicolas
Mendoza, Carlos I.
Bourillot, Eric
Barylyuk, Konstantin
Pompon, Denis
Zenobi, Renato
Reguera, David
Truan, Gilles
author_sort Garcia-Alles, Luis F.
collection PubMed
description CcmK proteins are major constituents of icosahedral shells of β-carboxysomes, a bacterial microcompartment that plays a key role for CO(2) fixation in nature. Supported by the characterization of bidimensional (2D) layers of packed CcmK hexamers in crystal and electron microscopy structures, CcmK are assumed to be the major components of icosahedral flat facets. Here, we reassessed the validity of this model by studying CcmK isoforms from Synechocystis sp. PCC6803. Native mass spectrometry studies confirmed that CcmK are hexamers in solution. Interestingly, potential pre-assembled intermediates were also detected with CcmK2. Atomic-force microscopy (AFM) imaging under quasi-physiological conditions confirmed the formation of canonical flat sheets with CcmK4. Conversely, CcmK2 formed both canonical and striped-patterned patches, while CcmK1 assembled into remarkable supra-hexameric curved honeycomb-like mosaics. Mutational studies ascribed the propensity of CcmK1 to form round assemblies to a combination of two features shared by at least one CcmK isoform in most β-cyanobacteria: a displacement of an α helical portion towards the hexamer edge, where a potential phosphate binding funnel forms between packed hexamers, and the presence of a short C-terminal extension in CcmK1. All-atom molecular dynamics supported a contribution of phosphate molecules sandwiched between hexamers to bend CcmK1 assemblies. Formation of supra-hexameric curved structures could be reproduced in coarse-grained simulations, provided that adhesion forces to the support were weak. Apart from uncovering unprecedented CcmK self-assembly features, our data suggest the possibility that transitions between curved and flat assemblies, following cargo maturation, could be important for the biogenesis of β-carboxysomes, possibly also of other BMC.
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spelling pubmed-56083222017-10-09 Spontaneous non-canonical assembly of CcmK hexameric components from β-carboxysome shells of cyanobacteria Garcia-Alles, Luis F. Lesniewska, Eric Root, Katharina Aubry, Nathalie Pocholle, Nicolas Mendoza, Carlos I. Bourillot, Eric Barylyuk, Konstantin Pompon, Denis Zenobi, Renato Reguera, David Truan, Gilles PLoS One Research Article CcmK proteins are major constituents of icosahedral shells of β-carboxysomes, a bacterial microcompartment that plays a key role for CO(2) fixation in nature. Supported by the characterization of bidimensional (2D) layers of packed CcmK hexamers in crystal and electron microscopy structures, CcmK are assumed to be the major components of icosahedral flat facets. Here, we reassessed the validity of this model by studying CcmK isoforms from Synechocystis sp. PCC6803. Native mass spectrometry studies confirmed that CcmK are hexamers in solution. Interestingly, potential pre-assembled intermediates were also detected with CcmK2. Atomic-force microscopy (AFM) imaging under quasi-physiological conditions confirmed the formation of canonical flat sheets with CcmK4. Conversely, CcmK2 formed both canonical and striped-patterned patches, while CcmK1 assembled into remarkable supra-hexameric curved honeycomb-like mosaics. Mutational studies ascribed the propensity of CcmK1 to form round assemblies to a combination of two features shared by at least one CcmK isoform in most β-cyanobacteria: a displacement of an α helical portion towards the hexamer edge, where a potential phosphate binding funnel forms between packed hexamers, and the presence of a short C-terminal extension in CcmK1. All-atom molecular dynamics supported a contribution of phosphate molecules sandwiched between hexamers to bend CcmK1 assemblies. Formation of supra-hexameric curved structures could be reproduced in coarse-grained simulations, provided that adhesion forces to the support were weak. Apart from uncovering unprecedented CcmK self-assembly features, our data suggest the possibility that transitions between curved and flat assemblies, following cargo maturation, could be important for the biogenesis of β-carboxysomes, possibly also of other BMC. Public Library of Science 2017-09-21 /pmc/articles/PMC5608322/ /pubmed/28934279 http://dx.doi.org/10.1371/journal.pone.0185109 Text en © 2017 Garcia-Alles et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Garcia-Alles, Luis F.
Lesniewska, Eric
Root, Katharina
Aubry, Nathalie
Pocholle, Nicolas
Mendoza, Carlos I.
Bourillot, Eric
Barylyuk, Konstantin
Pompon, Denis
Zenobi, Renato
Reguera, David
Truan, Gilles
Spontaneous non-canonical assembly of CcmK hexameric components from β-carboxysome shells of cyanobacteria
title Spontaneous non-canonical assembly of CcmK hexameric components from β-carboxysome shells of cyanobacteria
title_full Spontaneous non-canonical assembly of CcmK hexameric components from β-carboxysome shells of cyanobacteria
title_fullStr Spontaneous non-canonical assembly of CcmK hexameric components from β-carboxysome shells of cyanobacteria
title_full_unstemmed Spontaneous non-canonical assembly of CcmK hexameric components from β-carboxysome shells of cyanobacteria
title_short Spontaneous non-canonical assembly of CcmK hexameric components from β-carboxysome shells of cyanobacteria
title_sort spontaneous non-canonical assembly of ccmk hexameric components from β-carboxysome shells of cyanobacteria
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5608322/
https://www.ncbi.nlm.nih.gov/pubmed/28934279
http://dx.doi.org/10.1371/journal.pone.0185109
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