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Starch Synthesis in Ostreococcus tauri: The Starch-Binding Domains of Starch Synthase III-B Are Essential for Catalytic Activity

Starch is the major energy storage carbohydrate in photosynthetic eukaryotes. Several enzymes are involved in building highly organized semi-crystalline starch granules, including starch-synthase III (SSIII), which is widely conserved in photosynthetic organisms. This enzyme catalyzes the extension...

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Autores principales: Barchiesi, Julieta, Velazquez, Maria Belen, Palopoli, Nicolas, Iglesias, Alberto A., Gomez-Casati, Diego F., Ballicora, Miguel Angel, Busi, Maria Victoria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6210743/
https://www.ncbi.nlm.nih.gov/pubmed/30410499
http://dx.doi.org/10.3389/fpls.2018.01541
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author Barchiesi, Julieta
Velazquez, Maria Belen
Palopoli, Nicolas
Iglesias, Alberto A.
Gomez-Casati, Diego F.
Ballicora, Miguel Angel
Busi, Maria Victoria
author_facet Barchiesi, Julieta
Velazquez, Maria Belen
Palopoli, Nicolas
Iglesias, Alberto A.
Gomez-Casati, Diego F.
Ballicora, Miguel Angel
Busi, Maria Victoria
author_sort Barchiesi, Julieta
collection PubMed
description Starch is the major energy storage carbohydrate in photosynthetic eukaryotes. Several enzymes are involved in building highly organized semi-crystalline starch granules, including starch-synthase III (SSIII), which is widely conserved in photosynthetic organisms. This enzyme catalyzes the extension of the α-1,4 glucan chain and plays a regulatory role in the synthesis of starch. Interestingly, unlike most plants, the unicellular green alga Ostreococcus tauri has three SSIII isoforms. In the present study, we describe the structure and function of OsttaSSIII-B, which has a similar modular organization to SSIII in higher plants, comprising three putative starch-binding domains (SBDs) at the N-terminal region and a C-terminal catalytic domain (CD). Purified recombinant OsttaSSIII-B displayed a high affinity toward branched polysaccharides such as glycogen and amylopectin, and to ADP-glucose. Lower catalytic activity was detected for the CD lacking the associated SBDs, suggesting that they are necessary for enzyme function. Moreover, analysis of enzyme kinetic and polysaccharide-binding parameters of site-directed mutants with modified conserved aromatic amino acid residues W122, Y124, F138, Y147, W279, and W304, belonging to the SBDs, revealed their importance for polysaccharide binding and SS activity. Our results suggest that OT_ostta13g01200 encodes a functional SSIII comprising three SBD domains that are critical for enzyme function.
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spelling pubmed-62107432018-11-08 Starch Synthesis in Ostreococcus tauri: The Starch-Binding Domains of Starch Synthase III-B Are Essential for Catalytic Activity Barchiesi, Julieta Velazquez, Maria Belen Palopoli, Nicolas Iglesias, Alberto A. Gomez-Casati, Diego F. Ballicora, Miguel Angel Busi, Maria Victoria Front Plant Sci Plant Science Starch is the major energy storage carbohydrate in photosynthetic eukaryotes. Several enzymes are involved in building highly organized semi-crystalline starch granules, including starch-synthase III (SSIII), which is widely conserved in photosynthetic organisms. This enzyme catalyzes the extension of the α-1,4 glucan chain and plays a regulatory role in the synthesis of starch. Interestingly, unlike most plants, the unicellular green alga Ostreococcus tauri has three SSIII isoforms. In the present study, we describe the structure and function of OsttaSSIII-B, which has a similar modular organization to SSIII in higher plants, comprising three putative starch-binding domains (SBDs) at the N-terminal region and a C-terminal catalytic domain (CD). Purified recombinant OsttaSSIII-B displayed a high affinity toward branched polysaccharides such as glycogen and amylopectin, and to ADP-glucose. Lower catalytic activity was detected for the CD lacking the associated SBDs, suggesting that they are necessary for enzyme function. Moreover, analysis of enzyme kinetic and polysaccharide-binding parameters of site-directed mutants with modified conserved aromatic amino acid residues W122, Y124, F138, Y147, W279, and W304, belonging to the SBDs, revealed their importance for polysaccharide binding and SS activity. Our results suggest that OT_ostta13g01200 encodes a functional SSIII comprising three SBD domains that are critical for enzyme function. Frontiers Media S.A. 2018-10-25 /pmc/articles/PMC6210743/ /pubmed/30410499 http://dx.doi.org/10.3389/fpls.2018.01541 Text en Copyright © 2018 Barchiesi, Velazquez, Palopoli, Iglesias, Gomez-Casati, Ballicora and Busi. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Barchiesi, Julieta
Velazquez, Maria Belen
Palopoli, Nicolas
Iglesias, Alberto A.
Gomez-Casati, Diego F.
Ballicora, Miguel Angel
Busi, Maria Victoria
Starch Synthesis in Ostreococcus tauri: The Starch-Binding Domains of Starch Synthase III-B Are Essential for Catalytic Activity
title Starch Synthesis in Ostreococcus tauri: The Starch-Binding Domains of Starch Synthase III-B Are Essential for Catalytic Activity
title_full Starch Synthesis in Ostreococcus tauri: The Starch-Binding Domains of Starch Synthase III-B Are Essential for Catalytic Activity
title_fullStr Starch Synthesis in Ostreococcus tauri: The Starch-Binding Domains of Starch Synthase III-B Are Essential for Catalytic Activity
title_full_unstemmed Starch Synthesis in Ostreococcus tauri: The Starch-Binding Domains of Starch Synthase III-B Are Essential for Catalytic Activity
title_short Starch Synthesis in Ostreococcus tauri: The Starch-Binding Domains of Starch Synthase III-B Are Essential for Catalytic Activity
title_sort starch synthesis in ostreococcus tauri: the starch-binding domains of starch synthase iii-b are essential for catalytic activity
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6210743/
https://www.ncbi.nlm.nih.gov/pubmed/30410499
http://dx.doi.org/10.3389/fpls.2018.01541
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