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首页> 外文期刊>Journal of combinatorial chemistry >N-Terminal Peptide Aldehydes as Electrophiles in Combinatorial Solid Phase Synthesis of Novel Peptide Isosteres
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N-Terminal Peptide Aldehydes as Electrophiles in Combinatorial Solid Phase Synthesis of Novel Peptide Isosteres

机译:N端肽醛作为亲电试剂的新型肽等排物的组合固相合成

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N-Terminal peptide aldehydes were synthesized on a solid support and utilized as electrophiles in nucleophilic reactions in order to furnish novel and diverse peptide isosteres. The aldehyde moiety of the peptide was synthesized by coupling a protected aldehyde building block to the peptide and deprotecting it quantitatively in less than 3 min. It was found that protection of the two succeeding amide nitrogens was necessary in order to avoid reaction between the aldehyde and backbone amides. The N-terminal peptide aldehydes were successfully reacted in the following way: (a) reductive amination with a large variety of amines, leading to N-alkyl-γ-aminobutyric peptide isosteres positioned centrally in the peptide; (b) reductive amination with amino esters, leading to N-terminal 2,5-diketopiperazine peptides; (c) Horner-Wadsworth-Emmons olefination, leading to unsaturated peptide isosteres isosteres positioned centrally in the peptide; and (d) Pictet-Spengler condensations, leading to tetrahydro-β-carbolines either positioned centrally in a peptide or fused with a diketopiperazine ring in the N-terminus of the peptide.
机译:N-末端肽醛在固体载体上合成,并在亲核反应中用作亲电子试剂,以提供新颖多样的肽等排体。通过将保护的醛结构单元偶联到肽上并在不到3分钟的时间内对其进行定量脱保护,可以合成肽的醛部分。发现为了避免醛和主链酰胺之间的反应,必须保护两个连续的酰胺氮。 N-末端肽醛通过以下方式成功反应:(a)与多种胺进行还原胺化,导致N-烷基-γ-氨基丁酸等位肽位于肽的中心; (b)用氨基酯还原胺化,产生N-末端2,5-二酮哌嗪肽; (c)Horner-Wadsworth-Emmons烯化反应,导致不饱和肽等位异构体在肽中居中定位; (d)Pictet-Spengler缩合,导致四氢-β-咔啉在肽的中心定位或与肽的N-末端的二酮哌嗪环稠合。

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