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首页> 外文期刊>Amino acids >Preparation of enantiopure methionine, arginine, tryptophan, and proline benzyl esters in green ethers by Fischer-Speier reaction
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Preparation of enantiopure methionine, arginine, tryptophan, and proline benzyl esters in green ethers by Fischer-Speier reaction

机译:用Fischer-Speier反应制备映对蛋氨酸,精氨酸,色氨酸和脯氨酸苄酯

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摘要

The simplest way to prepare the tosylate salts of amino acid benzyl esters, whose enantiomers are very important synthetic intermediates, is treatment of amino acid with benzyl alcohol and p-toluenesulfonic acid in a refluxing water-azeotroping solvent (Fischer-Speier esterification). However, to this day, the literature proposes only hazardous solvents, such as benzene, carbon tetrachloride, and chloroform, which must be absolutely avoided, or solvents, such as toluene and benzyl alcohol, which cause racemization because of too high boiling water azeotropes. On the other hand, the alternative successful use of cyclohexane, which we have recently reported for several amino acid benzyl esters, is inapplicable or not very efficient for 'problematic' amino acid such as tryptophan, arginine, and methionine, for which, indeed, the simple Fischer-Speier esterification is not described or poorly exemplified in the literature. Therefore, more polar solvents, in particular the green ethers CPME, TAME, and Me-THF, were selected and first considered for the preparation of methionine benzyl ester, previously accomplished in cyclohexane with modest yield. After discarding CPME and TAME, because causing racemization and decomposing under acidic conditions, respectively, we focused on Me-THF. In this ether, the benzyl esters of Met, Arg, and Trp could be obtained in good yield and, as proved by chiral HPLC or H NMR analysis, enantiomerically pure. The procedure was successfully extended to proline benzyl ester, which could be prepared enantiomerically pure and in quantitative yield both in cyclohexane and in Me-THF, thus avoiding the recently reported use of carbon tetrachloride.
机译:制备氨基酸苄酯的甲磺酸盐盐的最简单方法,其对映体是非常重要的合成中间体,是在回流水 - 共沸溶剂中用苄醇和对甲苯磺酸的氨基酸(Fischer-Speier酯化)处理。然而,至今,文献才提出了危险溶剂,例如苯,四氯化碳和氯仿,这必须完全避免,或溶剂,例如甲苯和苄醇,这导致出色化的沸水共沸。另一方面,我们最近报道了几种氨基酸苄酯的环己烷的替代成功使用,对于“有问题”氨基酸如色氨酸,精氨酸和蛋氨酸,这是不适用的或不是非常有效的,但实际上,在文献中没有描述简单的Fischer-Speier酯化或持差。因此,选择更多的极性溶剂,特别是绿色醚Cpme,驯服和ME-THF,并首先考虑制备甲硫氨酸苄基酯,以前在环己烷中以适度的产率的制备。丢弃CPME和驯服后,因为在酸性条件下引起外消旋化和分解,我们专注于ME-THF。在该醚中,可以良好地获得Met,Arg和TRP的苄基酯,并通过手性HPLC或H NMR分析证明,对纯纯度进行纯净。该方法成功地扩展到脯氨酸苄酯,其可以在环己烷和ME-THF中对映体纯的和定量产率进行映体纯净,从而避免最近报道的四氯化碳使用。

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