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首页> 外文期刊>Journal of combinatorial chemistry >Synthesis of Aldehyde Building Blocks Protected as Acid Labile N-Boc N,O-Acetals: Toward Combinatorial Solid Phase Synthesis of Novel Peptide Isosteres
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Synthesis of Aldehyde Building Blocks Protected as Acid Labile N-Boc N,O-Acetals: Toward Combinatorial Solid Phase Synthesis of Novel Peptide Isosteres

机译:酸不稳定的N-Boc N,O-缩醛保护的醛结构单元的合成:新型肽异构体的组合固相合成

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The synthesis of (RS)-3'-tert-butoxycarbonyl-perhydro-1',23'-oxazine-2'-yl acetic acid and the syntheses of the simple and C- substituted 3'-tert-butoxycarbonyl-perhydro-1',3'-oxazine-2'(RS)-yl propionic acids from simple starting materials are presented. The simple compounds were prepared from 1,3-propanediol and 1,4-butanediol, respectively, via a short series of facile steps, in 70% overall yield in both cases. For the syntheses of the C-2 substituted compounds of the longer homologue, (RS)-3'-tert-butoxycarbonyl-perhydro-1',3'-oxazine-2'-yl propionic acid, a malonic ester route was selected, thus allowing easy incorporation of various side chains. The stability of the novel aldehyde protection group, the N-Boc N,O-acetal moiety, under various acidic conditions was investigated, and it was found to cleanly and rapidly yield the aldehyde under strong acidic conditions or, if desired, slower under less harsh conditions. As a demonstration of the use of the building block, one building block was coupled to a solid support and, after unmasking of the aldehyde, submitted to three different types of nucleophilic reactions (Pictet-Spengler condensation, reductive amination, Horner-Wadsworth-Emmons olefination) followed by further chemical modification, and the identity of the structures were verified after cleavage from the resin.
机译:(RS)-3'-叔丁氧羰基-过氢-1',23'-恶嗪-2'-基乙酸的合成以及简单的C取代的3'-叔丁氧羰基-过氢-1的合成提出了来自简单原料的',3'-恶嗪-2'(RS)-基丙酸。这些简单的化合物分别通过一系列简便的步骤分别由1,3-丙二醇和1,4-丁二醇制备,两种情况下的总收率均为70%。为了合成更长的同系物(RS)-3'-叔丁氧基羰基-过氢-1',3'-恶嗪-2'-基丙酸的C-2取代的化合物,选择了丙二酸酯途径,因此可以容易地结合各种侧链。研究了新型醛保护基N-Boc N,O-乙缩醛部分在各种酸性条件下的稳定性,发现在强酸性条件下可以干净迅速地生成醛,如果需要,可以在较低的酸性条件下更慢地生成醛。苛刻的条件。为了说明该结构单元的使用,将一个结构单元与固相支持物偶联,并在将醛解封后进行了三种不同类型的亲核反应(Pictet-Spengler缩合,还原胺化,Horner-Wadsworth-Emmons)烯烃化反应),然后进行进一步的化学修饰,并在从树脂上裂解后验证结构的身份。

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