Thioester Hydrolysis and CC Bond Formation by Carboxymethylproline Synthase from the Crotonase Superfamily
about
Definition of the common and divergent steps in carbapenem β-lactam antibiotic biosynthesisCrystal structure of DmdD, a crotonase superfamily enzyme that catalyzes the hydration and hydrolysis of methylthioacryloyl-CoAThe enzymes of β-lactam biosynthesis.The Burkholderia cenocepacia BDSF quorum sensing fatty acid is synthesized by a bifunctional crotonase homologue having both dehydratase and thioesterase activitiesStructural and stereoelectronic insights into oxygenase-catalyzed formation of ethylene from 2-oxoglutarate.Stereoselective preparation of lipidated carboxymethyl-proline/pipecolic acid derivatives via coupling of engineered crotonases with an alkylmalonyl-CoA synthetase.Divergent mechanistic routes for the formation of gem-dimethyl groups in the biosynthesis of complex polyketides.Stereoselective C-C bond formation catalysed by engineered carboxymethylproline synthases.Use of Methylmalonyl-CoA Epimerase in Enhancing Crotonase Stereoselectivity.
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P2860
Thioester Hydrolysis and CC Bond Formation by Carboxymethylproline Synthase from the Crotonase Superfamily
description
scientific article published on 01 January 2008
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wetenschappelijk artikel
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наукова стаття, опублікована в жовтні 2008
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name
Thioester Hydrolysis and CC B ...... from the Crotonase Superfamily
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Thioester Hydrolysis and CC B ...... from the Crotonase Superfamily
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type
label
Thioester Hydrolysis and CC B ...... from the Crotonase Superfamily
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Thioester Hydrolysis and CC B ...... from the Crotonase Superfamily
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prefLabel
Thioester Hydrolysis and CC B ...... from the Crotonase Superfamily
@en
Thioester Hydrolysis and CC B ...... from the Crotonase Superfamily
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Thioester hydrolysis and C-C b ...... from the crotonase superfamily
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Edward T Batchelar
Timothy D W Claridge
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P304
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10.1002/ANIE.200803906
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P577
2008-01-01T00:00:00Z