首页> 外文期刊>European journal of organic chemistry >Enzymatic Baeyer–Villiger Oxidation of Benzo-Fused Ketones:Formation of Regiocomplementary Lactones
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Enzymatic Baeyer–Villiger Oxidation of Benzo-Fused Ketones:Formation of Regiocomplementary Lactones

机译:苯并融合酮的酶促拜耳-维利格氧化:区域互补内酯的形成

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摘要

Baeyer–Villiger monooxygenases (BVMOs) are enzymes that are known to catalyse the Baeyer–Villiger oxidation of ketones in aqueous media using O2 as oxidant. Herein, we describe the oxidation of a set of diverse benzo-fused ketones by three different BVMOs in both aqueous and non-conventional reaction media. Most of the tested ketones, for example,1-tetralone and 1- and 2-indanone, were converted by one of the employed biocatalysts. The catalytic efficiency could be improved by performing the oxidation reactions at a relatively high pH and by adding organic cosolvents. One striking observation is that absolute and complementary regioselectivities were obtained when oxidizing a range of 1-indanones using two different BVMOs. The conversion of 1- indanone by 4-hydroxyacetophenone monooxygenase(HAPMO) results in the formation of the expected lactone,3,4-dihydrocoumarin. In contrast, by using a phenylacetone monooxygenase mutein (M-PAMO), conversion of 1-indanone leads to the formation of only the unexpected lactone, 1-isochromanone. This illustrates that by the appropriate choice of BVMO as biocatalyst, the effective and regioselective conversion of a wide range of benzo-fused ketones is feasible.
机译:Baeyer-Villiger单加氧酶(BVMOs)是已知的酶,可以使用O2作为氧化剂催化水性介质中酮的Baeyer-Villiger氧化。在本文中,我们描述了在水性和非常规反应介质中,三种不同的BVMO对一组不同的苯并稠合的酮的氧化作用。大多数测试的酮,例如1-四氢萘酮和1-和2-茚满酮,都由一种使用的生物催化剂转化。通过在较高pH下进行氧化反应并加入有机助溶剂,可以提高催化效率。一个惊人的发现是,当使用两种不同的BVMO氧化一定范围的1-茚满酮时,可获得绝对和互补的区域选择性。 4-羟基苯乙酮单加氧酶(HAPMO)将1-茚满酮转化为预期的内酯3,4-二氢香豆素。相反,通过使用苯丙酮单加氧酶突变蛋白(M-PAMO),1-茚满酮的转化导致仅形成意想不到的内酯1-异苯并二氢吡喃酮。这说明通过适当选择BVMO作为生物催化剂,可以实现多种苯并稠合酮的有效和区域选择性转化。

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