Dondoni Alessandro, Massi Alessandro, Aldhoun Mohammad
Dipartimento di Chimica, Laboratorio di Chimica Organica e Centro RMN, Università di Ferrara, Via L. Borsari 46, I-44100 Ferrara, Italy.
J Org Chem. 2007 Sep 28;72(20):7677-87. doi: 10.1021/jo071221r. Epub 2007 Sep 6.
C-Glycosylmethyl pyridylalanines reported in this paper constitute a novel family of glycosyl amino acids that contain a pyridine ring linking the carbohydrate and amino acid residues. These amino acids may serve to prepare nonnatural glycopeptides displaying firmly bound carbohydrate fragments through a rigid and highly stable tether. A viable route to these new hybrid molecules has been opened via thermally induced Hantzsch-type cyclocondensation using an aldehyde-ketoester-enamino ester system. To one of these reagents was attached a C-glycosyl residue, while to another was bound an amino acid fragment. In a one-pot optimized methodology, the dihydropyridine was not isolated while its purification was carried out by removal of unreacted material and side products using polymer-supported scavengers. Then the dihydropyridine (mixture of diastereoisomers) was oxidized by a polymer-bound oxidant to give the target pyridine bearing the two bioactive residues. In this way a range of eight compounds (58-68% yield) was prepared in which the elements of diversity were (i) the gluco and galacto configurations of the pyranose ring, (ii) the alpha- and beta-configurations at the anomeric center, and (iii) the positions of the carbohydrate and amino acid sectors in the pyridine ring. The orthogonal functional group protection in these amino acids allowed their easy incorporation into oligopeptides via sequential amino and carboxylic group coupling.
本文报道的C-糖基甲基吡啶丙氨酸构成了一类新型糖基氨基酸,其包含连接碳水化合物和氨基酸残基的吡啶环。这些氨基酸可用于制备通过刚性且高度稳定的连接基团牢固结合碳水化合物片段的非天然糖肽。通过使用醛-酮酯-烯胺酯体系的热诱导Hantzsch型环缩合反应,已开辟了一条合成这些新型杂合分子的可行路线。在其中一种试剂上连接了一个C-糖基残基,而在另一种试剂上连接了一个氨基酸片段。在一锅优化方法中,二氢吡啶未被分离,而是通过使用聚合物负载型清除剂去除未反应的物质和副产物来进行纯化。然后,二氢吡啶(非对映异构体混合物)被聚合物负载的氧化剂氧化,得到带有两个生物活性残基的目标吡啶。通过这种方式,制备了一系列八种化合物(产率为58 - 68%),其中的多样性元素包括:(i)吡喃糖环的葡萄糖和半乳糖构型;(ii)异头中心的α-和β-构型;(iii)碳水化合物和氨基酸部分在吡啶环中的位置。这些氨基酸中的正交官能团保护使得它们能够通过依次进行氨基和羧基偶联而轻松地掺入寡肽中。