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Advances in Understanding Carboxysome Assembly in Prochlorococcus and Synechococcus Implicate CsoS2 as a Critical Component

The marine Synechococcus and Prochlorococcus are the numerically dominant cyanobacteria in the ocean and important in global carbon fixation. They have evolved a CO(2)-concentrating-mechanism, of which the central component is the carboxysome, a self-assembling proteinaceous organelle. Two types of...

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Autores principales: Cai, Fei, Dou, Zhicheng, Bernstein, Susan L., Leverenz, Ryan, Williams, Eric B., Heinhorst, Sabine, Shively, Jessup, Cannon, Gordon C., Kerfeld, Cheryl A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4499774/
https://www.ncbi.nlm.nih.gov/pubmed/25826651
http://dx.doi.org/10.3390/life5021141
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author Cai, Fei
Dou, Zhicheng
Bernstein, Susan L.
Leverenz, Ryan
Williams, Eric B.
Heinhorst, Sabine
Shively, Jessup
Cannon, Gordon C.
Kerfeld, Cheryl A.
author_facet Cai, Fei
Dou, Zhicheng
Bernstein, Susan L.
Leverenz, Ryan
Williams, Eric B.
Heinhorst, Sabine
Shively, Jessup
Cannon, Gordon C.
Kerfeld, Cheryl A.
author_sort Cai, Fei
collection PubMed
description The marine Synechococcus and Prochlorococcus are the numerically dominant cyanobacteria in the ocean and important in global carbon fixation. They have evolved a CO(2)-concentrating-mechanism, of which the central component is the carboxysome, a self-assembling proteinaceous organelle. Two types of carboxysome, α and β, encapsulating form IA and form IB d-ribulose-1,5-bisphosphate carboxylase/oxygenase, respectively, differ in gene organization and associated proteins. In contrast to the β-carboxysome, the assembly process of the α-carboxysome is enigmatic. Moreover, an absolutely conserved α-carboxysome protein, CsoS2, is of unknown function and has proven recalcitrant to crystallization. Here, we present studies on the CsoS2 protein in three model organisms and show that CsoS2 is vital for α-carboxysome biogenesis. The primary structure of CsoS2 appears tripartite, composed of an N-terminal, middle (M)-, and C-terminal region. Repetitive motifs can be identified in the N- and M-regions. Multiple lines of evidence suggest CsoS2 is highly flexible, possibly an intrinsically disordered protein. Based on our results from bioinformatic, biophysical, genetic and biochemical approaches, including peptide array scanning for protein-protein interactions, we propose a model for CsoS2 function and its spatial location in the α-carboxysome. Analogies between the pathway for β-carboxysome biogenesis and our model for α-carboxysome assembly are discussed.
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spelling pubmed-44997742015-07-13 Advances in Understanding Carboxysome Assembly in Prochlorococcus and Synechococcus Implicate CsoS2 as a Critical Component Cai, Fei Dou, Zhicheng Bernstein, Susan L. Leverenz, Ryan Williams, Eric B. Heinhorst, Sabine Shively, Jessup Cannon, Gordon C. Kerfeld, Cheryl A. Life (Basel) Article The marine Synechococcus and Prochlorococcus are the numerically dominant cyanobacteria in the ocean and important in global carbon fixation. They have evolved a CO(2)-concentrating-mechanism, of which the central component is the carboxysome, a self-assembling proteinaceous organelle. Two types of carboxysome, α and β, encapsulating form IA and form IB d-ribulose-1,5-bisphosphate carboxylase/oxygenase, respectively, differ in gene organization and associated proteins. In contrast to the β-carboxysome, the assembly process of the α-carboxysome is enigmatic. Moreover, an absolutely conserved α-carboxysome protein, CsoS2, is of unknown function and has proven recalcitrant to crystallization. Here, we present studies on the CsoS2 protein in three model organisms and show that CsoS2 is vital for α-carboxysome biogenesis. The primary structure of CsoS2 appears tripartite, composed of an N-terminal, middle (M)-, and C-terminal region. Repetitive motifs can be identified in the N- and M-regions. Multiple lines of evidence suggest CsoS2 is highly flexible, possibly an intrinsically disordered protein. Based on our results from bioinformatic, biophysical, genetic and biochemical approaches, including peptide array scanning for protein-protein interactions, we propose a model for CsoS2 function and its spatial location in the α-carboxysome. Analogies between the pathway for β-carboxysome biogenesis and our model for α-carboxysome assembly are discussed. MDPI 2015-03-27 /pmc/articles/PMC4499774/ /pubmed/25826651 http://dx.doi.org/10.3390/life5021141 Text en © 2015 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cai, Fei
Dou, Zhicheng
Bernstein, Susan L.
Leverenz, Ryan
Williams, Eric B.
Heinhorst, Sabine
Shively, Jessup
Cannon, Gordon C.
Kerfeld, Cheryl A.
Advances in Understanding Carboxysome Assembly in Prochlorococcus and Synechococcus Implicate CsoS2 as a Critical Component
title Advances in Understanding Carboxysome Assembly in Prochlorococcus and Synechococcus Implicate CsoS2 as a Critical Component
title_full Advances in Understanding Carboxysome Assembly in Prochlorococcus and Synechococcus Implicate CsoS2 as a Critical Component
title_fullStr Advances in Understanding Carboxysome Assembly in Prochlorococcus and Synechococcus Implicate CsoS2 as a Critical Component
title_full_unstemmed Advances in Understanding Carboxysome Assembly in Prochlorococcus and Synechococcus Implicate CsoS2 as a Critical Component
title_short Advances in Understanding Carboxysome Assembly in Prochlorococcus and Synechococcus Implicate CsoS2 as a Critical Component
title_sort advances in understanding carboxysome assembly in prochlorococcus and synechococcus implicate csos2 as a critical component
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4499774/
https://www.ncbi.nlm.nih.gov/pubmed/25826651
http://dx.doi.org/10.3390/life5021141
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