Chemistry of pyruvate enolates : anti-selective direct aldol reactions of pyruvate ester with sugar aldehydes promoted by a dinuclear zinc catalyst

2015
journal article
article
13
dc.abstract.enA chiral dinuclear zinc complex can effectively catalyse the direct aldol reactions of pyruvic acid ester with various chiral sugar aldehydes, thus functionally mimicking the pyruvate-dependent type II aldolases. Application of sterically hindered aryl esters allows for the elusive aldol reaction of the pyruvate donor with controlled anti-selectivity en route to the short and efficient synthesis of 3-deoxy-2-ulosonic acids. Pyruvic acid ester is here used as a chemical equivalent of phosphoenol pyruvate (PEP) in imitation of the synthetic principle used in nature. The presented biomimetic methodologies use enol formation for the highly efficient and flexible formation of various C6–C9 ulosonic acids. Particularly, efficient and concise syntheses of 3-deoxy-D-erythro-hex-2-ulosonic acid (KDG, overall 50% yield), 3-deoxy-D-ribo-hept-2-ulosonic acid (DRH, overall 53% yield) and 3-deoxy-D-glycero-D-talo-non-2-ulosonic acid (4-epi-KDN, overall 78% yield) are described. This direct efficient application of pyruvic esters does not require additional demasking steps and thus surpassess previously methodologies utilising masked pyruvic synthons such 2-acetylthiazole and pyruvic aldehyde dimethyl acetal.pl
dc.affiliationWydział Chemii : Zakład Chemii Organicznejpl
dc.contributor.authorWolczko, Marta - 177586 pl
dc.contributor.authorBaś, Sebastian - 106197 pl
dc.contributor.authorEl-Sepelgy, Osama - 186330 pl
dc.contributor.authorStefaniak, Matylda - 237549 pl
dc.contributor.authorMłynarski, Jacek - 173385 pl
dc.date.accessioned2015-12-01T09:50:54Z
dc.date.available2015-12-01T09:50:54Z
dc.date.issued2015pl
dc.description.additionalProf. Młynarski Jacek afiliuje z Wydziału Chemii UJ. Na publikacji autorka Wolczko Marta podpisana jako Molenda Martapl
dc.description.admin[AB] El-Sepelgy, Osama 50000141pl
dc.description.number9pl
dc.description.physical2098-2104pl
dc.description.volume357pl
dc.identifier.doi10.1002/adsc.201500169pl
dc.identifier.eissn1615-4169pl
dc.identifier.issn1615-4150pl
dc.identifier.urihttp://ruj.uj.edu.pl/xmlui/handle/item/17347
dc.languageengpl
dc.language.containerengpl
dc.rights.licenceBez licencji otwartego dostępu
dc.subject.enaldol reactionpl
dc.subject.enpyruvate esterspl
dc.subject.enasymmetric synthesispl
dc.subject.enulosonic acidspl
dc.subject.enzinc catalystspl
dc.subtypeArticlepl
dc.titleChemistry of pyruvate enolates : anti-selective direct aldol reactions of pyruvate ester with sugar aldehydes promoted by a dinuclear zinc catalystpl
dc.title.journalAdvanced Synthesis & Catalysispl
dc.typeJournalArticlepl
dspace.entity.typePublication
dc.abstract.enpl
A chiral dinuclear zinc complex can effectively catalyse the direct aldol reactions of pyruvic acid ester with various chiral sugar aldehydes, thus functionally mimicking the pyruvate-dependent type II aldolases. Application of sterically hindered aryl esters allows for the elusive aldol reaction of the pyruvate donor with controlled anti-selectivity en route to the short and efficient synthesis of 3-deoxy-2-ulosonic acids. Pyruvic acid ester is here used as a chemical equivalent of phosphoenol pyruvate (PEP) in imitation of the synthetic principle used in nature. The presented biomimetic methodologies use enol formation for the highly efficient and flexible formation of various C6–C9 ulosonic acids. Particularly, efficient and concise syntheses of 3-deoxy-D-erythro-hex-2-ulosonic acid (KDG, overall 50% yield), 3-deoxy-D-ribo-hept-2-ulosonic acid (DRH, overall 53% yield) and 3-deoxy-D-glycero-D-talo-non-2-ulosonic acid (4-epi-KDN, overall 78% yield) are described. This direct efficient application of pyruvic esters does not require additional demasking steps and thus surpassess previously methodologies utilising masked pyruvic synthons such 2-acetylthiazole and pyruvic aldehyde dimethyl acetal.
dc.affiliationpl
Wydział Chemii : Zakład Chemii Organicznej
dc.contributor.authorpl
Wolczko, Marta - 177586
dc.contributor.authorpl
Baś, Sebastian - 106197
dc.contributor.authorpl
El-Sepelgy, Osama - 186330
dc.contributor.authorpl
Stefaniak, Matylda - 237549
dc.contributor.authorpl
Młynarski, Jacek - 173385
dc.date.accessioned
2015-12-01T09:50:54Z
dc.date.available
2015-12-01T09:50:54Z
dc.date.issuedpl
2015
dc.description.additionalpl
Prof. Młynarski Jacek afiliuje z Wydziału Chemii UJ. Na publikacji autorka Wolczko Marta podpisana jako Molenda Marta
dc.description.adminpl
[AB] El-Sepelgy, Osama 50000141
dc.description.numberpl
9
dc.description.physicalpl
2098-2104
dc.description.volumepl
357
dc.identifier.doipl
10.1002/adsc.201500169
dc.identifier.eissnpl
1615-4169
dc.identifier.issnpl
1615-4150
dc.identifier.uri
http://ruj.uj.edu.pl/xmlui/handle/item/17347
dc.languagepl
eng
dc.language.containerpl
eng
dc.rights.licence
Bez licencji otwartego dostępu
dc.subject.enpl
aldol reaction
dc.subject.enpl
pyruvate esters
dc.subject.enpl
asymmetric synthesis
dc.subject.enpl
ulosonic acids
dc.subject.enpl
zinc catalysts
dc.subtypepl
Article
dc.titlepl
Chemistry of pyruvate enolates : anti-selective direct aldol reactions of pyruvate ester with sugar aldehydes promoted by a dinuclear zinc catalyst
dc.title.journalpl
Advanced Synthesis & Catalysis
dc.typepl
JournalArticle
dspace.entity.type
Publication
Affiliations

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