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EvdS6 is a bifunctional decarboxylase from the everninomicin gene cluster

The everninomicins are bacterially produced antibiotic octasaccharides characterized by the presence of two interglycosidic spirocyclic ortho-δ-lactone (orthoester) moieties. The terminating G- and H-ring sugars, L-lyxose and C-4 branched sugar β-D-eurekanate, are proposed to be biosynthetically der...

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Autores principales: Dulin, Callie C., Sharma, Pankaj, Frigo, Laura, Voehler, Markus W., Iverson, T.M., Bachmann, Brian O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10338323/
https://www.ncbi.nlm.nih.gov/pubmed/37286037
http://dx.doi.org/10.1016/j.jbc.2023.104893
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author Dulin, Callie C.
Sharma, Pankaj
Frigo, Laura
Voehler, Markus W.
Iverson, T.M.
Bachmann, Brian O.
author_facet Dulin, Callie C.
Sharma, Pankaj
Frigo, Laura
Voehler, Markus W.
Iverson, T.M.
Bachmann, Brian O.
author_sort Dulin, Callie C.
collection PubMed
description The everninomicins are bacterially produced antibiotic octasaccharides characterized by the presence of two interglycosidic spirocyclic ortho-δ-lactone (orthoester) moieties. The terminating G- and H-ring sugars, L-lyxose and C-4 branched sugar β-D-eurekanate, are proposed to be biosynthetically derived from nucleotide diphosphate pentose sugar pyranosides; however, the identity of these precursors and their biosynthetic origin remain to be determined. Herein we identify a new glucuronic acid decarboxylase from Micromonospora belonging to the superfamily of short-chain dehydrogenase/reductase enzymes, EvdS6. Biochemical characterization demonstrated that EvdS6 is an NAD(+)-dependent bifunctional enzyme that produces a mixture of two products, differing in the sugar C-4 oxidation state. This product distribution is atypical for glucuronic acid decarboxylating enzymes, most of which favor production of the reduced sugar and a minority of which favor release of the oxidized product. Spectroscopic and stereochemical analysis of reaction products revealed that the first product released is the oxidatively produced 4-keto-D-xylose and the second product is the reduced D-xylose. X-ray crystallographic analysis of EvdS6 at 1.51 Å resolution with bound co-factor and TDP demonstrated that the overall geometry of the EvdS6 active site is conserved with other SDR enzymes and enabled studies probing structural determinants for the reductive half of the net neutral catalytic cycle. Critical active site threonine and aspartate residues were unambiguously identified as essential in the reductive step of the reaction and resulted in enzyme variants producing almost exclusively the keto sugar. This work defines potential precursors for the G-ring L-lyxose and resolves likely origins of the H-ring β-D-eurekanate sugar precursor.
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spelling pubmed-103383232023-07-14 EvdS6 is a bifunctional decarboxylase from the everninomicin gene cluster Dulin, Callie C. Sharma, Pankaj Frigo, Laura Voehler, Markus W. Iverson, T.M. Bachmann, Brian O. J Biol Chem Research Article The everninomicins are bacterially produced antibiotic octasaccharides characterized by the presence of two interglycosidic spirocyclic ortho-δ-lactone (orthoester) moieties. The terminating G- and H-ring sugars, L-lyxose and C-4 branched sugar β-D-eurekanate, are proposed to be biosynthetically derived from nucleotide diphosphate pentose sugar pyranosides; however, the identity of these precursors and their biosynthetic origin remain to be determined. Herein we identify a new glucuronic acid decarboxylase from Micromonospora belonging to the superfamily of short-chain dehydrogenase/reductase enzymes, EvdS6. Biochemical characterization demonstrated that EvdS6 is an NAD(+)-dependent bifunctional enzyme that produces a mixture of two products, differing in the sugar C-4 oxidation state. This product distribution is atypical for glucuronic acid decarboxylating enzymes, most of which favor production of the reduced sugar and a minority of which favor release of the oxidized product. Spectroscopic and stereochemical analysis of reaction products revealed that the first product released is the oxidatively produced 4-keto-D-xylose and the second product is the reduced D-xylose. X-ray crystallographic analysis of EvdS6 at 1.51 Å resolution with bound co-factor and TDP demonstrated that the overall geometry of the EvdS6 active site is conserved with other SDR enzymes and enabled studies probing structural determinants for the reductive half of the net neutral catalytic cycle. Critical active site threonine and aspartate residues were unambiguously identified as essential in the reductive step of the reaction and resulted in enzyme variants producing almost exclusively the keto sugar. This work defines potential precursors for the G-ring L-lyxose and resolves likely origins of the H-ring β-D-eurekanate sugar precursor. American Society for Biochemistry and Molecular Biology 2023-06-05 /pmc/articles/PMC10338323/ /pubmed/37286037 http://dx.doi.org/10.1016/j.jbc.2023.104893 Text en © 2023 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
Dulin, Callie C.
Sharma, Pankaj
Frigo, Laura
Voehler, Markus W.
Iverson, T.M.
Bachmann, Brian O.
EvdS6 is a bifunctional decarboxylase from the everninomicin gene cluster
title EvdS6 is a bifunctional decarboxylase from the everninomicin gene cluster
title_full EvdS6 is a bifunctional decarboxylase from the everninomicin gene cluster
title_fullStr EvdS6 is a bifunctional decarboxylase from the everninomicin gene cluster
title_full_unstemmed EvdS6 is a bifunctional decarboxylase from the everninomicin gene cluster
title_short EvdS6 is a bifunctional decarboxylase from the everninomicin gene cluster
title_sort evds6 is a bifunctional decarboxylase from the everninomicin gene cluster
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10338323/
https://www.ncbi.nlm.nih.gov/pubmed/37286037
http://dx.doi.org/10.1016/j.jbc.2023.104893
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