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Development of Efficient Synthetic Method for N-Amino Acyl N-Sulfanylethyl Anilide Linkers as Peptide Thioester Equivalent

机译:高效合成方法的N-氨基酰基N-磺基乙基苯硅接头的发展作为肽硫酯当量

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Native chemical ligation (NCL) which features the use of peptide thioesters is the most practical fragment condensation method for the synthesis of proteins [1]. However, preparation of peptide thioesters using Fmoc SPPS has encountered some problems including decomposition of thioesters during peptide chain elongation. Previously, we reported that N-sulfanylethylanilide (SEAlide) peptides 1 as a peptide thioester equivalent could be synthesized using N-Fmoc amino acyl N-sulfanylethyl anilide linkers 2 by Fmoc SPPS [2]. Although requisite amino acyl linkers 2 have been prepared using Fmoc amino acyl chlorides resulting from treatment of Fmoc amino acids with SOC12, such treatment induces the loss of acid-labile protections such as fert-butyl group. In this paper, we report an efficient introduction method of Fmoc amino acid derivatives to the N-sulfanylethyl aniline linker 3. In addition, the synthesis of a human GM2 activator protein (GM2AP) analog, which is an essential glycoprotein co-factor for degradation of ganglioside GM2 by P-hexosaminidase A (HexA) [3], using the SEAlide peptides 1 is also described.
机译:具有肽硫酯的使用的本机化学连接(NCL)是用于合成蛋白质的最实用的片段冷凝方法[1]。然而,使用FMOC SPP的肽硫酯的制备遇到了一些问题,包括在肽链伸长期间的硫酯分解。以前,我们报道了通过FMOC SPPS的N-FMOC氨基酰基N-磺基乙基苯硅烷接头2,可以合成作为肽硫酯当量的N-亚磺基乙基硅烷(密封)肽1 [2]。尽管使用FMOC氨基酰基氯化物制备了必需的氨基酰基接头2,因此由与SOC12的FMOC氨基酸处理产生的FMOC氨基酰氯,但这种处理会诱导酸不稳定保护如丁基脱硫。在本文中,我们报告了FMOC氨基酸衍生物的有效介绍方法,对N-磺基乙基苯胺连接物3.此外,人GM2活化剂蛋白(GM2AP)模拟的合成,其是降解的必需糖蛋白共同因子通过对P-六氨基氨基氨基氨基氨基氨基酶A(Hexa)[3],使用密封肽1的神经节苷脂GM2也是描述的。

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