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首页> 外文期刊>Beilstein journal of organic chemistry. >Enzymatic separation of epimeric 4-C-hydroxymethylated furanosugars: Synthesis of bicyclic nucleosides
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Enzymatic separation of epimeric 4-C-hydroxymethylated furanosugars: Synthesis of bicyclic nucleosides

机译:酶促分离游离型4-C-羟甲基化呋喃糖:双环核苷的合成

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Conversion of D-glucose to 4- C- hydroxymethyl-1,2- O -isopropylidene-α-D-ribofuranose, which is a key precursor for the synthesis of different types of bicyclic/spiro nucleosides, led to the formation of an inseparable 1:1 mixture of the desired product and 4- C- hydroxymethyl-1,2- O -isopropylidene-α-D-xylofuranose. A convenient environment friendly Novozyme?-435 catalyzed selective acetylation methodology has been developed for the separation of an epimeric mixture of ribo - and xylotrihydroxyfuranosides in quantitative yields. The structure of both the monoacetylated epimers, i.e., 5- O -acetyl-4- C -hydroxymethyl-1,2- O -isopropylidene-α-D-ribo- and xylofuranose obtained by enzymatic acetylation, has been confirmed by an X-ray study on their corresponding 4- C - p -toluenesulfonyloxymethyl derivatives. Furthermore, the two separated epimers were used for the convergent synthesis of two different types of bicyclic nucleosides, which confirms their synthetic utility.
机译:D-葡萄糖向4-C-羟甲基-1,2-O-异亚丙基-α-D-呋喃呋喃糖的转化是合成不同类型的双环/螺核苷的关键前体,导致了不可分离的形成所需产物与4-C-羟甲基-1,2-O-异亚丙基-α-D-木呋喃糖的1:1混合物。已经开发了一种方便的,环境友好的Novozyme ? -435催化的选择性乙酰化方法,该方法可定量分离核糖体和木三羟基呋喃糖苷的差向异构体混合物。单乙酰化差向异构体的结构,即通过酶促乙酰化获得的5-O-乙酰基-4-C-羟甲基-1,2-O-异亚丙基-α-D-核糖-和木呋喃糖的结构已被X-证实。射线研究其相应的4-C-对甲苯磺酰氧基甲基衍生物。此外,两个分离的差向异构体用于两种不同类型的双环核苷的融合合成,这证实了它们的合成效用。

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