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酶促合成薄荷单萜生物合成途径中的中间体。

Chemoenzymatic Synthesis of the Intermediates in the Peppermint Monoterpenoid Biosynthetic Pathway.

机构信息

BBSRC/EPSRC Manchester Synthetic Biology Research Centre for Fine and Speciality Chemicals (SYNBIOCHEM), Manchester Institute of Biotechnology and School of Chemistry , The University of Manchester , 131 Princess Street , Manchester M1 7DN , U.K.

出版信息

J Nat Prod. 2018 Jul 27;81(7):1546-1552. doi: 10.1021/acs.jnatprod.7b01026. Epub 2018 Jul 6.

Abstract

A chemoenzymatic approach providing access to all four intermediates in the peppermint biosynthetic pathway between limonene and menthone/isomenthone, including noncommercially available intermediates (-)- trans-isopiperitenol (2), (-)-isopiperitenone (3), and (+)- cis-isopulegone (4), is described. Oxidation of (+)-isopulegol (13) followed by enolate selenation and oxidative elimination steps provides (-)-isopiperitenone (3). A chemical reduction and separation route from (3) provides both native (-)- trans-isopiperitenol (2) and isomer (-)- cis-isopiperitenol (18), while enzymatic conjugate reduction of (-)-isopiperitenone (3) with IPR [(-)-isopiperitenone reductase)] provides (+)- cis-isopulegone (4). This undergoes facile base-mediated chemical epimerization to (+)-pulegone (5), which is subsequently shown to be a substrate for NtDBR ( Nicotiana tabacum double-bond reductase) to afford (-)-menthone (7) and (+)-isomenthone (8).

摘要

一种酶促化学方法可用于从柠檬烯到薄荷酮/异薄荷酮的薄荷生物合成途径中的所有四个中间体,包括商业上不可用的中间体(-)-反式异戊烯醇(2)、(-)异戊烯酮(3)和(+)-顺式异胡薄荷酮(4)。(+)-异薄荷醇(13)的氧化,然后是烯醇硒化和氧化消除步骤,提供(-)异戊烯酮(3)。从(3)通过化学还原和分离路线提供了天然(-)-反式异戊烯醇(2)和异构体(-)-顺式异戊烯醇(18),而(-)-异戊烯酮(3)与 IPR [(-)-异戊烯酮还原酶)]的酶促共轭还原提供了(+)-顺式异胡薄荷酮(4)。它经过易发生碱介导的化学差向异构化生成(+)-胡椒酮(5),随后显示其为 NtDBR(烟草双烯还原酶)的底物,从而得到(-)薄荷酮(7)和(+)-异薄荷酮(8)。

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