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Chemo-Enzymatic Oxidative Rearrangement of Tertiary Allylic Alcohols: Synthetic Application and Integration into a Cascade Process

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논문

Chemo-Enzymatic Oxidative Rearrangement of Tertiary Allylic Alcohols: Synthetic Application and Integration into a Cascade Process

학술지

Advanced synthesis & catalysis

저자명

Brenna, Elisabetta; Crotti, Michele; De Pieri, Matteo; Gatti, Francesco G.; Manenti, Gabriele; Monti, Daniela

초록

<P><B>Abstract</B></P><P>A chemo&#8208;enzymatic catalytic system, comprised of Bobbitt's salt and laccase from <I>Trametes versicolor</I>, allowed the [1,3]&#8208;oxidative rearrangement of endocyclic allylic tertiary alcohols into the corresponding enones under an Oxygen atmosphere in aqueous media. The yields were in most cases quantitative, especially for the cyclopent&#8208;2&#8208;en&#8208;1&#8208;ol or the cyclohex&#8208;2&#8208;en&#8208;1&#8208;ol substrates without an electron withdrawing group (EWG) on the side chain. Transpositions of macrocyclic alkenols or tertiary alcohols bearing an EWG on the side chain were instead carried out in acetonitrile by using an immobilized laccase preparation. Dehydro&#8208;Jasmone&reg;, dehydro&#8208;Hedione&reg;, dehydro&#8208;Muscone and other fragrance precursors were directly prepared with this procedure, while a synthetic route was developed to easily transform a cyclopentenone derivative into <I>trans&#8208;</I>Magnolione&reg; and dehydro&#8208;Magnolione&reg;<SUB>.</SUB> The rearrangement of exocyclic allylic alcohols was tested as well, and a dynamic kinetic resolution was observed: &alpha;,&beta;&#8208;unsaturated ketones with (<I>E</I>)&#8208;configuration and a high diastereomeric excess were synthesized. Finally, the 2,2,6,6&#8208;tetramethyl&#8208;1&#8208;piperidinium tetrafluoroborate (TEMPO<SUP>+</SUP>BF<SUB>4</SUB><SUP>&minus;</SUP>)/laccase catalysed oxidative rearrangement was combined with the ene&#8208;reductase/alcohol dehydrogenase cascade process in a one&#8208;pot three&#8208;step synthesis of <I>cis</I> or <I>trans</I> 3&#8208;methylcyclohexan&#8208;1&#8208;ol, in both cases with a high optical purity.</P>

발행연도

2018

ISSN

1615-4150

ISSN

1615-4169

360

19

페이지

pp.3677-3686

주제어

Oxidation; Dynamic Kinetic Resolution; Rearrangement; Redox Enzymes; Stereoselectivity; Fragrances

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논문; 2018-05-28

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