In:
Angewandte Chemie International Edition, Wiley, Vol. 55, No. 40 ( 2016-09-26), p. 12248-12251
Abstract:
A new heme–thiolate peroxidase catalyzes the hydroxylation of n ‐alkanes at the terminal position—a challenging reaction in organic chemistry—with H 2 O 2 as the only cosubstrate. Besides the primary product, 1‐dodecanol, the conversion of dodecane yielded dodecanoic, 12‐hydroxydodecanoic, and 1,12‐dodecanedioic acids, as identified by GC–MS. Dodecanal could be detected only in trace amounts, and 1,12‐dodecanediol was not observed, thus suggesting that dodecanoic acid is the branch point between mono‐ and diterminal hydroxylation. Simultaneously, oxygenation was observed at other hydrocarbon chain positions (preferentially C2 and C11). Similar results were observed in reactions of tetradecane. The pattern of products formed, together with data on the incorporation of 18 O from the cosubstrate H 2 18 O 2 , demonstrate that the enzyme acts as a peroxygenase that is able to catalyze a cascade of mono‐ and diterminal oxidation reactions of long‐chain n ‐alkanes to give carboxylic acids.
Type of Medium:
Online Resource
ISSN:
1433-7851
,
1521-3773
DOI:
10.1002/anie.201605430
Language:
English
Publisher:
Wiley
Publication Date:
2016
detail.hit.zdb_id:
2011836-3
detail.hit.zdb_id:
123227-7
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