Belsito Emilia, Di Gioia Maria L, Greco Antonella, Leggio Antonella, Liguori Angelo, Perri Francesca, Siciliano Carlo, Viscomi Maria C
Dipartimento di Scienze Farmaceutiche, Università della Calabria, Via P. Bucci, Cubo 15/C, I-87036 Arcavacata di Rende (CS) - Italy.
J Org Chem. 2007 Jun 22;72(13):4798-802. doi: 10.1021/jo070438i. Epub 2007 Jun 1.
N-Methyl-beta(3)-amino acids are important building blocks in the synthesis of biologically active molecules. A very simple and efficient approach to transform natural alpha-amino acids into their corresponding N-methyl-beta(3)-amino acids is here presented. In the method, the key intermediates N-methyl-N-nosyl-alpha-aminoacyldiazomethanes are prepared in only one step, by a simple treatment of the corresponding N-nosyl-alpha-aminoacyl chlorides with diazomethane. The synthetic route takes advantage from the use of the nosyl group. This N-masking moiety activates the NH function, and the N-methylation can directly occur during the acylation step of diazomethane, rendering useless a second step that instead is shown to be necessary in all the classical procedures already reported for the preparation of N-methyl-beta(3)-amino acids. The Wolff rearrangement of N-methyl-N-nosyl-alpha-aminoacyldiazomethanes provides the corresponding N-methyl-N-nosyl-beta(3)-amino acids with total retention of the chiral configuration of the starting alpha-amino acids. No epimerization of the chiral carbon atom is observed also when N-methyl-N-nosyl-beta(3)-amino acids are transformed into chlorides and coupled with alpha-amino acid methyl esters to achieve model scaffolds for biologically important modified peptides.
N-甲基-β(3)-氨基酸是生物活性分子合成中的重要组成部分。本文介绍了一种将天然α-氨基酸转化为其相应的N-甲基-β(3)-氨基酸的非常简单有效的方法。在该方法中,关键中间体N-甲基-N-亚硝基-α-氨基酰基重氮甲烷只需一步即可通过用重氮甲烷简单处理相应的N-亚硝基-α-氨基酰氯来制备。该合成路线利用了亚硝基的作用。这种N-掩蔽部分激活了NH官能团,并且N-甲基化可以在重氮甲烷的酰化步骤中直接发生,从而使第二步变得无用,而第二步在已报道的所有制备N-甲基-β(3)-氨基酸的经典方法中都是必需的。N-甲基-N-亚硝基-α-氨基酰基重氮甲烷的沃尔夫重排提供了相应的N-甲基-N-亚硝基-β(3)-氨基酸,同时完全保留了起始α-氨基酸的手性构型。当N-甲基-N-亚硝基-β(3)-氨基酸转化为氯化物并与α-氨基酸甲酯偶联以获得具有生物学重要性的修饰肽的模型支架时,也未观察到手性碳原子的差向异构化。