首页> 外文期刊>The Journal of Organic Chemistry >A one-pot procedure for the preparation of N-9-fluorenylmethyloxycarbonyl- α-amino diazoketones from α-amino acids
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A one-pot procedure for the preparation of N-9-fluorenylmethyloxycarbonyl- α-amino diazoketones from α-amino acids

机译:一锅法从α-氨基酸制备N-9-芴基甲氧基羰基-α-氨基重氮酮

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摘要

The study describes a new "one-pot" route to the synthesis of N-9-fluorenylmethyloxycarbonyl (Fmoc) α-amino diazoketones. The procedure was tested on a series of commercially available free or side-chain protected α-amino acids employed as precursors. The conversion into the title compounds was achieved by masking and activating the α-amino acids with a single reagent, namely, 9-fluorenylmethyl chloroformate (Fmoc-Cl). The resulting N-protected mixed anhydrides were reacted with diazomethane to lead to the α-amino diazoketones, which were isolated by flash column chromatography in very good to excellent overall yields. The versatility of the procedure was verified on lipophilic α-amino acids and further demonstrated by the preparation of N-Fmoc-α-amino diazoketones also from α-amino acids containing side-chain masking groups, which are orthogonal to the Fmoc one. The results confirmed that tert-butyloxycarbonyl (Boc), tert-butyl (~tBu), and 2,2,4,6,7-pentamethyldihydrobenzofuran-5-sulfonyl (Pbf), three acid-labile protecting groups mostly adopted in the solution and solid-phase peptide synthesis, are compatible to the adopted reaction conditions. In all cases, the formation of the corresponding C-methyl ester of the starting amino acid was not observed. Moreover, the proposed method respects the chirality of the starting α-amino acids. No racemization occurred when the procedure was applied to the synthesis of the respective N-Fmoc-protected α-amino diazoketones from l-isoleucine and l-threonine and to the preparation of a diastereomeric pair of N-Fmoc-protected dipeptidyl diazoketones.
机译:该研究描述了一种新的“一锅法”合成N-9-芴基甲氧羰基(Fmoc)α-氨基重氮酮的途径。在一系列用作前体的可商购的游离或侧链保护的α-氨基酸上测试了该程序。通过用一种试剂,即9-芴基甲基氯甲酸酯(Fmoc-Cl)掩盖和活化α-氨基酸,可以实现标题化合物的转化。使所得的N-保护的混合酸酐与重氮甲烷反应,生成α-氨基重氮酮,通过快速柱色谱法分离得到的α-氨基重氮酮非常好,总收率非常好。该方法的多功能性在亲脂性α-氨基酸上得到证实,并通过还由含有与Fmoc正交的侧链掩蔽基团的α-氨基酸制备N-Fmoc-α-氨基重氮酮进一步证明。结果证实,叔丁氧羰基(Boc),叔丁基(〜tBu)和2,2,4,6,7-五甲基二氢苯并呋喃-5-磺酰基(Pbf)这三个对酸不稳定的保护基团在溶液中主要被采用固相肽的合成以及与所采用的反应条件兼容。在所有情况下,未观察到起始氨基酸的相应C-甲基酯的形成。此外,所提出的方法考虑了起始α-氨基酸的手性。当该程序用于从1-异亮氨酸和1-苏氨酸合成相应的N-Fmoc-保护的α-氨基重氮酮和制备N-Fmoc-保护的二肽二氮杂双酮非对映异构体时,没有消旋作用发生。

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