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Oxyfunctionalization of aliphatic compounds by a recombinant peroxygenase from Coprinopsis cinerea

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논문

Oxyfunctionalization of aliphatic compounds by a recombinant peroxygenase from Coprinopsis cinerea

학술지

Biotechnology and bioengineering

저자명

Babot, Esteban D.; del Rí o, José C.; Kalum, Lisbeth; Martí nez, Angel T.; Gutié rrez, Ana

초록

<P><B>Abstract</B></P><P>The goal of this study is the selective oxyfunctionalization of aliphatic compounds under mild and environmentally friendly conditions using a low&#8208;cost enzymatic biocatalyst. This could be possible taking advantage from a new peroxidase type that catalyzes monooxygenase reactions with H<SUB>2</SUB>O<SUB>2</SUB> as the only cosubstrate (peroxygenase). With this purpose, recombinant peroxygenase, from gene mining in the sequenced genome of <I>Coprinopsis cinerea</I> and heterologous expression using an industrial fungal host, is tested for the first time on aliphatic substrates. The reaction on free and esterified fatty acids and alcohols, and long&#8208;chain alkanes was followed by gas chromatography, and the different reaction products were identified by mass spectrometry. Regioselective hydroxylation of saturated/unsaturated fatty acids was observed at the &omega;&#8208;1 and &omega;&#8208;2 positions (only at the &omega;&#8208;2 position in myristoleic acid). Alkyl esters of fatty acids and monoglycerides were also &omega;&#8208;1 or &omega;&#8208;2 hydroxylated, but di&#8208; and tri&#8208;glycerides were not modified. Fatty alcohols yielded hydroxy derivatives at the &omega;&#8208;1 or &omega;&#8208;2 positions (diols) but also fatty acids and their hydroxy derivatives. Interestingly, the peroxygenase was able to oxyfunctionalize alkanes giving, in addition to alcohols at positions 2 or 3, dihydroxylated derivatives at both sides of the molecule. The predominance of mono&#8208; or di&#8208;hydroxylated derivatives seems related to the higher or lower proportion of acetone, respectively, in the reaction medium. The recombinant <I>C. cinerea</I> peroxygenase appears as a promising biocatalyst for alkane activation and production of aliphatic oxygenated derivatives, with better properties than the previously reported peroxygenase from <I>Agrocybe aegerita</I>, and advantages related to its recombinant nature for enzyme engineering and industrial production. Biotechnol. Bioeng. 2013; 110:2323&ndash;2332. &copy; 2013 Wiley Periodicals, Inc.</P>

발행연도

2013

ISSN

0006-3592

ISSN

1097-0290

110

9

페이지

pp.2323-2332

주제어

peroxygenase; hydroxylation; alkanes; fatty alcohols; fatty acids

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1 2023-12-11

논문; 2013-12-31

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