首页> 外文期刊>The Journal of Organic Chemistry >Synthetic procedure for N-Fmoc amino acyl-N-sulfanylethylaniline linker as crypto-peptide thioester precursor with application to native chemical ligation
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Synthetic procedure for N-Fmoc amino acyl-N-sulfanylethylaniline linker as crypto-peptide thioester precursor with application to native chemical ligation

机译:N-Fmoc氨基酰基-N-硫烷基乙基苯胺接头作为隐肽硫酯前体的合成方法及其在天然化学连接中的应用

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摘要

N-Sulfanylethylanilide (SEAlide) peptides 1, obtainable using Fmoc-based solid-phase peptide synthesis (Fmoc SPPS), function as crypto-thioesters in native chemical ligation (NCL), yielding a wide variety of peptides/proteins. Their acylating potential with N-terminal cysteinyl peptides 2 can be tuned by the presence or absence of phosphate salts, leading to one-pot/multifragment ligation, operating under kinetically controlled conditions. SEAlide peptides have already been shown to be promising for use in protein synthesis; however, a widely applicable method for the synthesis of N-Fmoc amino acyl-N- sulfanylethylaniline linkers 4, required for the preparation of SEAlide peptides, is unavailable. The present study addresses the development of efficient condensation protocols of 20 naturally occurring amino acid derivatives to the N-sulfanylethylaniline linker 5. N-Fmoc amino acyl aniline linkers 4 of practical use in NCL chemistry, except in the case of the proline- or aspartic acid-containing linker, were successfully synthesized by coupling of POCl _3- or SOCl _2-activated Fmoc amino acid derivatives with sodium anilide species 6, without accompanying racemization and loss of side-chain protection. Furthermore, SEAlide peptides 7 possessing various C-terminal amino acids (Gly, His, Phe, Ala, Asn, Ser, Glu, and Val) were shown to be of practical use in NCL chemistry.
机译:可使用基于Fmoc的固相肽合成(Fmoc SPPS)获得的N-硫烷基乙基苯胺(SEAlide)肽1在天然化学连接(NCL)中用作隐硫酯,产生多种肽/蛋白质。可以通过存在或不存在磷酸盐来调节它们与N-末端半胱氨酰肽2的酰化潜力,从而导致一锅/多片段连接,在动力学控制的条件下操作。已经证明SEAlide肽有望用于蛋白质合成。然而,尚无用于制备SEAlide肽所需的合成N-Fmoc氨基酰基-N-硫烷基乙基苯胺接头4的广泛适用的方法。本研究致力于开发20种天然存在的氨基酸衍生物与N-硫烷基乙基苯胺连接基5的有效缩合方案。N-Fmoc氨基酰基苯胺连接基4在NCL化学中具有实际用途,但脯氨酸或天冬氨酸除外通过将POCl _3-或SOCl _2活化的Fmoc氨基酸衍生物与苯胺钠物种6偶联而成功合成了含丙烯酸的连接基,而没有消旋化和失去侧链保护。此外,显示具有各种C末端氨基酸(Gly,His,Phe,Ala,Asn,Ser,Glu和Val)的SEAlide肽7在NCL化学中具有实际用途。

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