Di Gioia Maria Luisa, Leggio Antonella, Le Pera Adolfo, Liguori Angelo, Siciliano Carlo
Dipartimento di Scienze Farmaceutiche, Università della Calabria, Via P. Bucci, I-87036 Arcavacata di Rende (CS), Italy.
J Org Chem. 2005 Dec 9;70(25):10494-501. doi: 10.1021/jo051890+.
[reaction: see text] This article reports a straightforward and unprecedented process of AlCl3-assisted oxaziridine ring opening by nitrogen containing nucleophiles, in a totally anhydrous milieu. Under these conditions, nucleophiles exclusively attack the carbon atom of the three-membered heterocycles, obtained from methyl esters of natural alpha-amino acids, generating N-hydroxy-alpha-L-amino acid methyl esters. No nitrones, amides, or other side products, either from unwanted rearrangements or due to the attack of the nucleophile on the N atom of the oxaziridine systems, are formed. The hydroxylamine compounds are recovered in excellent yields, after their site-specific conversion into the corresponding O-triisopropylsilyl derivatives, by exposure to triisopropylsilyl triflate in the presence of 1H-imidazole. Derivatization, performed immediately after the recovery of the N-hydroxylated precursors, allows the chiral integrity of the asymmetric alpha-carbon atoms in the amino acid methyl esters to be retained. It also protects the obtained compounds from frame degradation by disproportionation. N-Hydroxy-O-triisopropylsilyl-alpha-L-amino acid methyl esters are important intermediates in the study of natural alpha-L-amino acid metabolic pathways and are ideal candidates as starting materials in the synthesis of biologically, pharmacologically, and nutritionally important N-hydroxy peptides.
[反应:见正文] 本文报道了在完全无水的环境中,三氯化铝辅助含氮亲核试剂开环氮杂环丙烷的一个直接且前所未有的过程。在这些条件下,亲核试剂专门进攻由天然α-氨基酸甲酯得到的三元杂环的碳原子,生成N-羟基-α-L-氨基酸甲酯。不会形成因不需要的重排或由于亲核试剂进攻氮杂环丙烷体系的N原子而产生的硝酮、酰胺或其他副产物。在1H-咪唑存在下,通过使其与三异丙基甲硅烷基三氟甲磺酸酯反应,将羟胺化合物位点特异性转化为相应 的O-三异丙基甲硅烷基衍生物后,可高收率回收。在回收N-羟基化前体后立即进行衍生化,可保留氨基酸甲酯中不对称α-碳原子的手性完整性。它还可保护所得化合物不被歧化降解。N-羟基-O-三异丙基甲硅烷基-α-L-氨基酸甲酯是研究天然α-L-氨基酸代谢途径的重要中间体,是合成具有生物学、药理学和营养学重要性的N-羟基肽的理想起始原料。