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首页> 外文期刊>RSC Advances >alpha-Chymotrypsin and L-acylase aided synthesis of 5-hydroxypipecolic acid via Jacobsen's hydrolytic kinetic resolution of epoxy amino acids
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alpha-Chymotrypsin and L-acylase aided synthesis of 5-hydroxypipecolic acid via Jacobsen's hydrolytic kinetic resolution of epoxy amino acids

机译:通过Jacobsen的环氧氨基酸的水解动力学分辨率,α-chymotrypsin和L-酰基酶辅助合成5-羟基苯二甲酸

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摘要

Diethyl malonate derivatives were used to synthesize racemic 2-amino-5-hexenoic acid. These racemic 2-amino-5-hexenoic acid (homoallylyglycine) derivatives were efficiently resolved aided by alpha-chymotrypsin or L-acylase, giving rise to L- and D-enantiomers. These isolated enantiomerically pure amino acids with tert-butoxycarbonyl (Boc) protection were oxidised with 3-chloroperbenzoic acid. The oxidation gave rise to inseparable diastereomeric epoxides due to a newly generated chiral center at the C-5 carbon. The isolation of one of the diastereomeric epoxides was possible by selectively converting the remaining diastereomer into a dihydroxyl compound catalysed by Jacobsen's hydrolytic kinetic resolution (HKR). The isolated epoxide was regioselectively attacked by LiBr to give vicinal halohydrin, with bromide attacking the terminal C-6 carbon. Boc deprotection of the halohydrin led to intramolecular cyclization by attack of free amine at the C-6 carbon, generating a single isomer of 5-hydroxypipecolic acid which was effortlessly recovered in good yield after re-protection of the amine with the Boc group. Similarly the dihydroxyl compound isolated earlier was converted to a halohydrin with iodine at the C-6 carbon. This was feasible by efficient regioselective mono-tosylation with catalytic Bu2SnO followed by iodine substitution. This was utilized to synthesize the 5-hydroxypipecolic acid derivative in the same described sequence consisting of Boc removal by acid treatment, cyclization, reprotection and purification. Finally the same sequence was repeated with the D-isomer and two diastereomers were isolated.
机译:丙二酸二乙酯衍生物用于合成外消旋2-氨基-5-己烯酸。通过α-chymotrypsin或L-酰化酶有效地解析出这些外消旋的2-氨基-5-己烯酸(均匀甘氨酸)衍生物,产生L-和D-映体。用叔丁氧基羰基(BOC)保护的这些分离的对映体纯氨基酸用3-氯苯甲酸氧化。由于C-5碳的新产生的手性中心,氧化使得不可分割的非对映异构体环氧化物。通过选择性地将剩余的非对映异构体选择性地将剩余的非对丙基化合物(HKR)选择性地转化为二羟基化合物中的二羟基化合物来分离。将分离的环氧化物由LIBR攻击邻近卤代卤醇,用溴化物攻击末端C-6碳。卤代醇的脱保护通过C-6碳的游离胺对分子内环化导致分子内环化,产生5-羟基苯磺酸的单一异构体,在重新保护胺与BOC组后毫不费力地回收。类似地,将较早出现的二羟基化合物转化为在C-6碳的碘与卤代醇转化为卤代醇。这是通过高效的区域选择性单溶溶解与催化Bu2Sno,然后是碘取代的可行性。这用于以通过酸处理,环化,再生和纯化组成的相同描述的序列合成5-羟基噻烷酸衍生物。最后用D-异构体重复相同的序列,分离出两个非对映异构体。

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  • 来源
    《RSC Advances》 |2015年第64期|共7页
  • 作者单位

    Kyushu Inst Technol Dept Appl Chem Kitakyushu Fukuoka 8048550 Japan;

    Kyushu Inst Technol Dept Appl Chem Kitakyushu Fukuoka 8048550 Japan;

    Kyushu Inst Technol Grad Sch Life Sci &

    Syst Engn Kitakyushu Fukuoka 8080196 Japan;

    Kyushu Inst Technol Dept Appl Chem Kitakyushu Fukuoka 8048550 Japan;

    Kyushu Inst Technol Dept Appl Chem Kitakyushu Fukuoka 8048550 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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