Projects per year
Abstract
Various widely applied compounds contain cyano-groups, and this functional group serves as a chemical handle for a whole range of different reactions. We report a cyanide free chemoenzymatic cascade for nitrile synthesis. The reaction pathway starts with a reduction of carboxylic acid to aldehyde by carboxylate reductase enzymes (CARs) applied as living cell biocatalysts. The second – chemical – step includes in situ oxime formation with hydroxylamine. The final direct step from oxime to nitrile is catalyzed by aldoxime dehydratases (Oxds). With compatible combinations of a CAR and an Oxd, applied in one-pot two-step reactions, several aliphatic and aryl-aliphatic target nitriles were obtained in more than 80% conversion. Phenylacetonitrile, for example, was prepared in 78% isolated yield. This chemoenzymatic route does not require cyanide salts, toxic metals, or undesired oxidants in contrast to entirely chemical procedures. (Figure presented.).
| Original language | English |
|---|---|
| Pages (from-to) | 37-42 |
| Number of pages | 6 |
| Journal | Advanced Synthesis and Catalysis |
| Volume | 365 |
| Issue number | 1 |
| DOIs | |
| Publication status | Published - 10 Jan 2023 |
Keywords
- aldoxime dehydratase (Oxd)
- carboxylic acid reductase (CAR)
- chemoenzymatic synthesis
- cyanide-free nitrile synthesis
- nitriles
- oxidoreductases
ASJC Scopus subject areas
- Catalysis
- Organic Chemistry
Fields of Expertise
- Human- & Biotechnology
Fingerprint
Dive into the research topics of 'Organic Acid to Nitrile: a chemoenzymatic three-step route'. Together they form a unique fingerprint.Projects
- 1 Finished
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FWF - Nitriles - A new chemoenzymatic route from carboxylic acids to nitriles
Winkler, M. (Project manager on research unit) & Winkler, M. (Consortium manager resp. coordinator with external organisations)
1/03/20 → 1/08/24
Project: Research project
Activities
- 1 Public lecture or debate
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Enzymatic and microbial synthesis of Bioflavours
Winkler, M. (Speaker)
10 Jun 2024Activity: Talk or presentation › Public lecture or debate › Science to public
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Activity, stability and applications of aldoxime dehydratase biocatalysts immobilized on metal affinity resins
Kristkova, B., Martínková, L., Rädisch, R., Rucká, L., Kulik, N., Winkler, M. & Pátek, M., 26 Jun 2023.Research output: Contribution to conference › Poster
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Scanning aldoxime dehydratase sequence space and characterization of a new aldoxime dehydratase OxdFv from Fusarium vanettenii
Kristkova, B., Rädisch, R., Kulik, N., Horvat, M., Rucká, L., Grulich, M., Rudroff, F., Kadek, A., Patek, M., Winkler, M. & Martínková, L., 2023, In: Enzyme and Microbial Technology. 164, 110187.Research output: Contribution to journal › Article › peer-review
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Chemoenzymatic one-pot reaction from carboxylic acid to nitrile via oxime
Horvat, M., Weilch, V., Rädisch, R., Hecko, S., Schiefer, A., Rudroff, F., Wilding, B., Klempier, N., Patek, M., Martínková, L. & Winkler, M., 7 Jan 2022, In: Catalysis Science & Technology. 12, 1, p. 62-66 5 p.Research output: Contribution to journal › Article › peer-review
Open Access
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