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Functional Annotation and Structural Characterization of a Novel Lactonase Hydrolyzing d-Xylono-1,4-lactone-5-phosphate and l-Arabino-1,4-lactone-5-phosphate

[Image: see text] A novel lactonase from Mycoplasma synoviae 53 (MS53_0025) and Mycoplasma agalactiae PG2 (MAG_6390) was characterized by protein structure determination, molecular docking, gene context analysis, and library screening. The crystal structure of MS53_0025 was determined to a resolutio...

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Autores principales: Korczynska, Magdalena, Xiang, Dao Feng, Zhang, Zhening, Xu, Chengfu, Narindoshvili, Tamari, Kamat, Siddhesh S., Williams, Howard J., Chang, Shawn S., Kolb, Peter, Hillerich, Brandan, Sauder, J. Michael, Burley, Stephen K., Almo, Steven C., Swaminathan, Subramanyam, Shoichet, Brian K., Raushel, Frank M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4108184/
https://www.ncbi.nlm.nih.gov/pubmed/24955762
http://dx.doi.org/10.1021/bi500595c
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author Korczynska, Magdalena
Xiang, Dao Feng
Zhang, Zhening
Xu, Chengfu
Narindoshvili, Tamari
Kamat, Siddhesh S.
Williams, Howard J.
Chang, Shawn S.
Kolb, Peter
Hillerich, Brandan
Sauder, J. Michael
Burley, Stephen K.
Almo, Steven C.
Swaminathan, Subramanyam
Shoichet, Brian K.
Raushel, Frank M.
author_facet Korczynska, Magdalena
Xiang, Dao Feng
Zhang, Zhening
Xu, Chengfu
Narindoshvili, Tamari
Kamat, Siddhesh S.
Williams, Howard J.
Chang, Shawn S.
Kolb, Peter
Hillerich, Brandan
Sauder, J. Michael
Burley, Stephen K.
Almo, Steven C.
Swaminathan, Subramanyam
Shoichet, Brian K.
Raushel, Frank M.
author_sort Korczynska, Magdalena
collection PubMed
description [Image: see text] A novel lactonase from Mycoplasma synoviae 53 (MS53_0025) and Mycoplasma agalactiae PG2 (MAG_6390) was characterized by protein structure determination, molecular docking, gene context analysis, and library screening. The crystal structure of MS53_0025 was determined to a resolution of 2.06 Å. This protein adopts a typical amidohydrolase (β/α)(8)-fold and contains a binuclear zinc center located at the C-terminal end of the β-barrel. A phosphate molecule was bound in the active site and hydrogen bonds to Lys217, Lys244, Tyr245, Arg275, and Tyr278. Both docking and gene context analysis were used to narrow the theoretical substrate profile of the enzyme, thus directing empirical screening to identify that MS53_0025 and MAG_6390 catalyze the hydrolysis of d-xylono-1,4-lactone-5-phosphate (2) with k(cat)/K(m) values of 4.7 × 10(4) and 5.7 × 10(4) M(–1) s(–1) and l-arabino-1,4-lactone-5-phosphate (7) with k(cat)/K(m) values of 1.3 × 10(4) and 2.2 × 10(4) M(–1) s(–1), respectively. The identification of the substrate profile of these two phospho-furanose lactonases emerged only when all methods were integrated and therefore provides a blueprint for future substrate identification of highly related amidohydrolase superfamily members.
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spelling pubmed-41081842015-06-23 Functional Annotation and Structural Characterization of a Novel Lactonase Hydrolyzing d-Xylono-1,4-lactone-5-phosphate and l-Arabino-1,4-lactone-5-phosphate Korczynska, Magdalena Xiang, Dao Feng Zhang, Zhening Xu, Chengfu Narindoshvili, Tamari Kamat, Siddhesh S. Williams, Howard J. Chang, Shawn S. Kolb, Peter Hillerich, Brandan Sauder, J. Michael Burley, Stephen K. Almo, Steven C. Swaminathan, Subramanyam Shoichet, Brian K. Raushel, Frank M. Biochemistry [Image: see text] A novel lactonase from Mycoplasma synoviae 53 (MS53_0025) and Mycoplasma agalactiae PG2 (MAG_6390) was characterized by protein structure determination, molecular docking, gene context analysis, and library screening. The crystal structure of MS53_0025 was determined to a resolution of 2.06 Å. This protein adopts a typical amidohydrolase (β/α)(8)-fold and contains a binuclear zinc center located at the C-terminal end of the β-barrel. A phosphate molecule was bound in the active site and hydrogen bonds to Lys217, Lys244, Tyr245, Arg275, and Tyr278. Both docking and gene context analysis were used to narrow the theoretical substrate profile of the enzyme, thus directing empirical screening to identify that MS53_0025 and MAG_6390 catalyze the hydrolysis of d-xylono-1,4-lactone-5-phosphate (2) with k(cat)/K(m) values of 4.7 × 10(4) and 5.7 × 10(4) M(–1) s(–1) and l-arabino-1,4-lactone-5-phosphate (7) with k(cat)/K(m) values of 1.3 × 10(4) and 2.2 × 10(4) M(–1) s(–1), respectively. The identification of the substrate profile of these two phospho-furanose lactonases emerged only when all methods were integrated and therefore provides a blueprint for future substrate identification of highly related amidohydrolase superfamily members. American Chemical Society 2014-06-23 2014-07-22 /pmc/articles/PMC4108184/ /pubmed/24955762 http://dx.doi.org/10.1021/bi500595c Text en Copyright © 2014 American Chemical Society Terms of Use (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html)
spellingShingle Korczynska, Magdalena
Xiang, Dao Feng
Zhang, Zhening
Xu, Chengfu
Narindoshvili, Tamari
Kamat, Siddhesh S.
Williams, Howard J.
Chang, Shawn S.
Kolb, Peter
Hillerich, Brandan
Sauder, J. Michael
Burley, Stephen K.
Almo, Steven C.
Swaminathan, Subramanyam
Shoichet, Brian K.
Raushel, Frank M.
Functional Annotation and Structural Characterization of a Novel Lactonase Hydrolyzing d-Xylono-1,4-lactone-5-phosphate and l-Arabino-1,4-lactone-5-phosphate
title Functional Annotation and Structural Characterization of a Novel Lactonase Hydrolyzing d-Xylono-1,4-lactone-5-phosphate and l-Arabino-1,4-lactone-5-phosphate
title_full Functional Annotation and Structural Characterization of a Novel Lactonase Hydrolyzing d-Xylono-1,4-lactone-5-phosphate and l-Arabino-1,4-lactone-5-phosphate
title_fullStr Functional Annotation and Structural Characterization of a Novel Lactonase Hydrolyzing d-Xylono-1,4-lactone-5-phosphate and l-Arabino-1,4-lactone-5-phosphate
title_full_unstemmed Functional Annotation and Structural Characterization of a Novel Lactonase Hydrolyzing d-Xylono-1,4-lactone-5-phosphate and l-Arabino-1,4-lactone-5-phosphate
title_short Functional Annotation and Structural Characterization of a Novel Lactonase Hydrolyzing d-Xylono-1,4-lactone-5-phosphate and l-Arabino-1,4-lactone-5-phosphate
title_sort functional annotation and structural characterization of a novel lactonase hydrolyzing d-xylono-1,4-lactone-5-phosphate and l-arabino-1,4-lactone-5-phosphate
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4108184/
https://www.ncbi.nlm.nih.gov/pubmed/24955762
http://dx.doi.org/10.1021/bi500595c
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