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Structure of Bacteroides thetaiotaomicron BT2081 at 2.05 Å resolution: the first structural representative of a new protein family that may play a role in carbohydrate metabolism

BT2081 from Bacteroides thetaiotaomicron (GenBank accession code NP_810994.1) is a member of a novel protein family consisting of over 160 members, most of which are found in the different classes of Bacteroidetes. Genome-context analysis lends support to the involvement of this family in carbohydra...

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Autores principales: Yeh, Andrew P., Abdubek, Polat, Astakhova, Tamara, Axelrod, Herbert L., Bakolitsa, Constantina, Cai, Xiaohui, Carlton, Dennis, Chen, Connie, Chiu, Hsiu-Ju, Chiu, Michelle, Clayton, Thomas, Das, Debanu, Deller, Marc C., Duan, Lian, Ellrott, Kyle, Farr, Carol L., Feuerhelm, Julie, Grant, Joanna C., Grzechnik, Anna, Han, Gye Won, Jaroszewski, Lukasz, Jin, Kevin K., Klock, Heath E., Knuth, Mark W., Kozbial, Piotr, Krishna, S. Sri, Kumar, Abhinav, Lam, Winnie W., Marciano, David, McMullan, Daniel, Miller, Mitchell D., Morse, Andrew T., Nigoghossian, Edward, Nopakun, Amanda, Okach, Linda, Puckett, Christina, Reyes, Ron, Tien, Henry J., Trame, Christine B., van den Bedem, Henry, Weekes, Dana, Wooten, Tiffany, Xu, Qingping, Hodgson, Keith O., Wooley, John, Elsliger, Marc-André, Deacon, Ashley M., Godzik, Adam, Lesley, Scott A., Wilson, Ian A.
Formato: Texto
Lenguaje:English
Publicado: International Union of Crystallography 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2954218/
https://www.ncbi.nlm.nih.gov/pubmed/20944224
http://dx.doi.org/10.1107/S1744309110028228
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author Yeh, Andrew P.
Abdubek, Polat
Astakhova, Tamara
Axelrod, Herbert L.
Bakolitsa, Constantina
Cai, Xiaohui
Carlton, Dennis
Chen, Connie
Chiu, Hsiu-Ju
Chiu, Michelle
Clayton, Thomas
Das, Debanu
Deller, Marc C.
Duan, Lian
Ellrott, Kyle
Farr, Carol L.
Feuerhelm, Julie
Grant, Joanna C.
Grzechnik, Anna
Han, Gye Won
Jaroszewski, Lukasz
Jin, Kevin K.
Klock, Heath E.
Knuth, Mark W.
Kozbial, Piotr
Krishna, S. Sri
Kumar, Abhinav
Lam, Winnie W.
Marciano, David
McMullan, Daniel
Miller, Mitchell D.
Morse, Andrew T.
Nigoghossian, Edward
Nopakun, Amanda
Okach, Linda
Puckett, Christina
Reyes, Ron
Tien, Henry J.
Trame, Christine B.
van den Bedem, Henry
Weekes, Dana
Wooten, Tiffany
Xu, Qingping
Hodgson, Keith O.
Wooley, John
Elsliger, Marc-André
Deacon, Ashley M.
Godzik, Adam
Lesley, Scott A.
Wilson, Ian A.
author_facet Yeh, Andrew P.
Abdubek, Polat
Astakhova, Tamara
Axelrod, Herbert L.
Bakolitsa, Constantina
Cai, Xiaohui
Carlton, Dennis
Chen, Connie
Chiu, Hsiu-Ju
Chiu, Michelle
Clayton, Thomas
Das, Debanu
Deller, Marc C.
Duan, Lian
Ellrott, Kyle
Farr, Carol L.
Feuerhelm, Julie
Grant, Joanna C.
Grzechnik, Anna
Han, Gye Won
Jaroszewski, Lukasz
Jin, Kevin K.
Klock, Heath E.
Knuth, Mark W.
Kozbial, Piotr
Krishna, S. Sri
Kumar, Abhinav
Lam, Winnie W.
Marciano, David
McMullan, Daniel
Miller, Mitchell D.
Morse, Andrew T.
Nigoghossian, Edward
Nopakun, Amanda
Okach, Linda
Puckett, Christina
Reyes, Ron
Tien, Henry J.
Trame, Christine B.
van den Bedem, Henry
Weekes, Dana
Wooten, Tiffany
Xu, Qingping
Hodgson, Keith O.
Wooley, John
Elsliger, Marc-André
Deacon, Ashley M.
Godzik, Adam
Lesley, Scott A.
Wilson, Ian A.
author_sort Yeh, Andrew P.
collection PubMed
description BT2081 from Bacteroides thetaiotaomicron (GenBank accession code NP_810994.1) is a member of a novel protein family consisting of over 160 members, most of which are found in the different classes of Bacteroidetes. Genome-context analysis lends support to the involvement of this family in carbohydrate metabolism, which plays a key role in B. thetaiotaomicron as a predominant bacterial symbiont in the human distal gut microbiome. The crystal structure of BT2081 at 2.05 Å resolution represents the first structure from this new protein family. BT2081 consists of an N-terminal domain, which adopts a β-sandwich immunoglobulin-like fold, and a larger C-terminal domain with a β-sandwich jelly-roll fold. Structural analyses reveal that both domains are similar to those found in various carbohydrate-active enzymes. The C-terminal β-jelly-roll domain contains a potential carbohydrate-binding site that is highly conserved among BT2081 homologs and is situated in the same location as the carbohydrate-binding sites that are found in structurally similar glycoside hydrolases (GHs). However, in BT2081 this site is partially occluded by surrounding loops, which results in a deep solvent-accessible pocket rather than a shallower solvent-exposed cleft.
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spelling pubmed-29542182010-10-27 Structure of Bacteroides thetaiotaomicron BT2081 at 2.05 Å resolution: the first structural representative of a new protein family that may play a role in carbohydrate metabolism Yeh, Andrew P. Abdubek, Polat Astakhova, Tamara Axelrod, Herbert L. Bakolitsa, Constantina Cai, Xiaohui Carlton, Dennis Chen, Connie Chiu, Hsiu-Ju Chiu, Michelle Clayton, Thomas Das, Debanu Deller, Marc C. Duan, Lian Ellrott, Kyle Farr, Carol L. Feuerhelm, Julie Grant, Joanna C. Grzechnik, Anna Han, Gye Won Jaroszewski, Lukasz Jin, Kevin K. Klock, Heath E. Knuth, Mark W. Kozbial, Piotr Krishna, S. Sri Kumar, Abhinav Lam, Winnie W. Marciano, David McMullan, Daniel Miller, Mitchell D. Morse, Andrew T. Nigoghossian, Edward Nopakun, Amanda Okach, Linda Puckett, Christina Reyes, Ron Tien, Henry J. Trame, Christine B. van den Bedem, Henry Weekes, Dana Wooten, Tiffany Xu, Qingping Hodgson, Keith O. Wooley, John Elsliger, Marc-André Deacon, Ashley M. Godzik, Adam Lesley, Scott A. Wilson, Ian A. Acta Crystallogr Sect F Struct Biol Cryst Commun Human Gut Microbiome BT2081 from Bacteroides thetaiotaomicron (GenBank accession code NP_810994.1) is a member of a novel protein family consisting of over 160 members, most of which are found in the different classes of Bacteroidetes. Genome-context analysis lends support to the involvement of this family in carbohydrate metabolism, which plays a key role in B. thetaiotaomicron as a predominant bacterial symbiont in the human distal gut microbiome. The crystal structure of BT2081 at 2.05 Å resolution represents the first structure from this new protein family. BT2081 consists of an N-terminal domain, which adopts a β-sandwich immunoglobulin-like fold, and a larger C-terminal domain with a β-sandwich jelly-roll fold. Structural analyses reveal that both domains are similar to those found in various carbohydrate-active enzymes. The C-terminal β-jelly-roll domain contains a potential carbohydrate-binding site that is highly conserved among BT2081 homologs and is situated in the same location as the carbohydrate-binding sites that are found in structurally similar glycoside hydrolases (GHs). However, in BT2081 this site is partially occluded by surrounding loops, which results in a deep solvent-accessible pocket rather than a shallower solvent-exposed cleft. International Union of Crystallography 2010-08-04 /pmc/articles/PMC2954218/ /pubmed/20944224 http://dx.doi.org/10.1107/S1744309110028228 Text en © Yeh et al. 2010 http://creativecommons.org/licenses/by/2.0/uk/ This is an open-access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
spellingShingle Human Gut Microbiome
Yeh, Andrew P.
Abdubek, Polat
Astakhova, Tamara
Axelrod, Herbert L.
Bakolitsa, Constantina
Cai, Xiaohui
Carlton, Dennis
Chen, Connie
Chiu, Hsiu-Ju
Chiu, Michelle
Clayton, Thomas
Das, Debanu
Deller, Marc C.
Duan, Lian
Ellrott, Kyle
Farr, Carol L.
Feuerhelm, Julie
Grant, Joanna C.
Grzechnik, Anna
Han, Gye Won
Jaroszewski, Lukasz
Jin, Kevin K.
Klock, Heath E.
Knuth, Mark W.
Kozbial, Piotr
Krishna, S. Sri
Kumar, Abhinav
Lam, Winnie W.
Marciano, David
McMullan, Daniel
Miller, Mitchell D.
Morse, Andrew T.
Nigoghossian, Edward
Nopakun, Amanda
Okach, Linda
Puckett, Christina
Reyes, Ron
Tien, Henry J.
Trame, Christine B.
van den Bedem, Henry
Weekes, Dana
Wooten, Tiffany
Xu, Qingping
Hodgson, Keith O.
Wooley, John
Elsliger, Marc-André
Deacon, Ashley M.
Godzik, Adam
Lesley, Scott A.
Wilson, Ian A.
Structure of Bacteroides thetaiotaomicron BT2081 at 2.05 Å resolution: the first structural representative of a new protein family that may play a role in carbohydrate metabolism
title Structure of Bacteroides thetaiotaomicron BT2081 at 2.05 Å resolution: the first structural representative of a new protein family that may play a role in carbohydrate metabolism
title_full Structure of Bacteroides thetaiotaomicron BT2081 at 2.05 Å resolution: the first structural representative of a new protein family that may play a role in carbohydrate metabolism
title_fullStr Structure of Bacteroides thetaiotaomicron BT2081 at 2.05 Å resolution: the first structural representative of a new protein family that may play a role in carbohydrate metabolism
title_full_unstemmed Structure of Bacteroides thetaiotaomicron BT2081 at 2.05 Å resolution: the first structural representative of a new protein family that may play a role in carbohydrate metabolism
title_short Structure of Bacteroides thetaiotaomicron BT2081 at 2.05 Å resolution: the first structural representative of a new protein family that may play a role in carbohydrate metabolism
title_sort structure of bacteroides thetaiotaomicron bt2081 at 2.05 å resolution: the first structural representative of a new protein family that may play a role in carbohydrate metabolism
topic Human Gut Microbiome
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2954218/
https://www.ncbi.nlm.nih.gov/pubmed/20944224
http://dx.doi.org/10.1107/S1744309110028228
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