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Sas20 is a highly flexible starch-binding protein in the Ruminococcus bromii cell-surface amylosome

Ruminococcus bromii is a keystone species in the human gut that has the rare ability to degrade dietary resistant starch (RS). This bacterium secretes a suite of starch-active proteins that work together within larger complexes called amylosomes that allow R. bromii to bind and degrade RS. Starch ad...

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Autores principales: Cerqueira, Filipe M., Photenhauer, Amanda L., Doden, Heidi L., Brown, Aric N., Abdel-Hamid, Ahmed M., Moraïs, Sarah, Bayer, Edward A., Wawrzak, Zdzislaw, Cann, Isaac, Ridlon, Jason M., Hopkins, Jesse B., Koropatkin, Nicole M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9112005/
https://www.ncbi.nlm.nih.gov/pubmed/35378131
http://dx.doi.org/10.1016/j.jbc.2022.101896
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author Cerqueira, Filipe M.
Photenhauer, Amanda L.
Doden, Heidi L.
Brown, Aric N.
Abdel-Hamid, Ahmed M.
Moraïs, Sarah
Bayer, Edward A.
Wawrzak, Zdzislaw
Cann, Isaac
Ridlon, Jason M.
Hopkins, Jesse B.
Koropatkin, Nicole M.
author_facet Cerqueira, Filipe M.
Photenhauer, Amanda L.
Doden, Heidi L.
Brown, Aric N.
Abdel-Hamid, Ahmed M.
Moraïs, Sarah
Bayer, Edward A.
Wawrzak, Zdzislaw
Cann, Isaac
Ridlon, Jason M.
Hopkins, Jesse B.
Koropatkin, Nicole M.
author_sort Cerqueira, Filipe M.
collection PubMed
description Ruminococcus bromii is a keystone species in the human gut that has the rare ability to degrade dietary resistant starch (RS). This bacterium secretes a suite of starch-active proteins that work together within larger complexes called amylosomes that allow R. bromii to bind and degrade RS. Starch adherence system protein 20 (Sas20) is one of the more abundant proteins assembled within amylosomes, but little could be predicted about its molecular features based on amino acid sequence. Here, we performed a structure–function analysis of Sas20 and determined that it features two discrete starch-binding domains separated by a flexible linker. We show that Sas20 domain 1 contains an N-terminal β-sandwich followed by a cluster of α-helices, and the nonreducing end of maltooligosaccharides can be captured between these structural features. Furthermore, the crystal structure of a close homolog of Sas20 domain 2 revealed a unique bilobed starch-binding groove that targets the helical α1,4-linked glycan chains found in amorphous regions of amylopectin and crystalline regions of amylose. Affinity PAGE and isothermal titration calorimetry demonstrated that both domains bind maltoheptaose and soluble starch with relatively high affinity (K(d) ≤ 20 μM) but exhibit limited or no binding to cyclodextrins. Finally, small-angle X-ray scattering analysis of the individual and combined domains support that these structures are highly flexible, which may allow the protein to adopt conformations that enhance its starch-targeting efficiency. Taken together, we conclude that Sas20 binds distinct features within the starch granule, facilitating the ability of R. bromii to hydrolyze dietary RS.
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spelling pubmed-91120052022-05-20 Sas20 is a highly flexible starch-binding protein in the Ruminococcus bromii cell-surface amylosome Cerqueira, Filipe M. Photenhauer, Amanda L. Doden, Heidi L. Brown, Aric N. Abdel-Hamid, Ahmed M. Moraïs, Sarah Bayer, Edward A. Wawrzak, Zdzislaw Cann, Isaac Ridlon, Jason M. Hopkins, Jesse B. Koropatkin, Nicole M. J Biol Chem Research Article Ruminococcus bromii is a keystone species in the human gut that has the rare ability to degrade dietary resistant starch (RS). This bacterium secretes a suite of starch-active proteins that work together within larger complexes called amylosomes that allow R. bromii to bind and degrade RS. Starch adherence system protein 20 (Sas20) is one of the more abundant proteins assembled within amylosomes, but little could be predicted about its molecular features based on amino acid sequence. Here, we performed a structure–function analysis of Sas20 and determined that it features two discrete starch-binding domains separated by a flexible linker. We show that Sas20 domain 1 contains an N-terminal β-sandwich followed by a cluster of α-helices, and the nonreducing end of maltooligosaccharides can be captured between these structural features. Furthermore, the crystal structure of a close homolog of Sas20 domain 2 revealed a unique bilobed starch-binding groove that targets the helical α1,4-linked glycan chains found in amorphous regions of amylopectin and crystalline regions of amylose. Affinity PAGE and isothermal titration calorimetry demonstrated that both domains bind maltoheptaose and soluble starch with relatively high affinity (K(d) ≤ 20 μM) but exhibit limited or no binding to cyclodextrins. Finally, small-angle X-ray scattering analysis of the individual and combined domains support that these structures are highly flexible, which may allow the protein to adopt conformations that enhance its starch-targeting efficiency. Taken together, we conclude that Sas20 binds distinct features within the starch granule, facilitating the ability of R. bromii to hydrolyze dietary RS. American Society for Biochemistry and Molecular Biology 2022-04-01 /pmc/articles/PMC9112005/ /pubmed/35378131 http://dx.doi.org/10.1016/j.jbc.2022.101896 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Cerqueira, Filipe M.
Photenhauer, Amanda L.
Doden, Heidi L.
Brown, Aric N.
Abdel-Hamid, Ahmed M.
Moraïs, Sarah
Bayer, Edward A.
Wawrzak, Zdzislaw
Cann, Isaac
Ridlon, Jason M.
Hopkins, Jesse B.
Koropatkin, Nicole M.
Sas20 is a highly flexible starch-binding protein in the Ruminococcus bromii cell-surface amylosome
title Sas20 is a highly flexible starch-binding protein in the Ruminococcus bromii cell-surface amylosome
title_full Sas20 is a highly flexible starch-binding protein in the Ruminococcus bromii cell-surface amylosome
title_fullStr Sas20 is a highly flexible starch-binding protein in the Ruminococcus bromii cell-surface amylosome
title_full_unstemmed Sas20 is a highly flexible starch-binding protein in the Ruminococcus bromii cell-surface amylosome
title_short Sas20 is a highly flexible starch-binding protein in the Ruminococcus bromii cell-surface amylosome
title_sort sas20 is a highly flexible starch-binding protein in the ruminococcus bromii cell-surface amylosome
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9112005/
https://www.ncbi.nlm.nih.gov/pubmed/35378131
http://dx.doi.org/10.1016/j.jbc.2022.101896
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