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使用第二代 N-酰基脲键合试剂进行化学蛋白质合成,以制备肽硫酯前体。

Chemical Protein Synthesis Using a Second-Generation N-Acylurea Linker for the Preparation of Peptide-Thioester Precursors.

机构信息

‡Departments of Chemistry and Biology, University of Salerno, Via Giovanni Paolo II 132, Fisciano 84084, Italy.

§Department of Organic Chemistry, University of Barcelona, Martí i Franqués 1-11, Barcelona 08028, Spain.

出版信息

J Am Chem Soc. 2015 Jun 10;137(22):7197-209. doi: 10.1021/jacs.5b03504. Epub 2015 Jun 2.

Abstract

The broad utility of native chemical ligation (NCL) in protein synthesis has fostered a search for methods that enable the efficient synthesis of C-terminal peptide-thioesters, key intermediates in NCL. We have developed an N-acylurea (Nbz) approach for the synthesis of thioester peptide precursors that efficiently undergo thiol exchange yielding thioester peptides and subsequently NCL reaction. However, the synthesis of some glycine-rich sequences revealed limitations, such as diacylated products that can not be converted into N-acylurea peptides. Here, we introduce a new N-acylurea linker bearing an o-amino(methyl)aniline (MeDbz) moiety that enables in a more robust peptide chain assembly. The generality of the approach is illustrated by the synthesis of a pentaglycine sequence under different coupling conditions including microwave heating at coupling temperatures up to 90 C, affording the unique and desired N-acyl-N'-methylacylurea (MeNbz) product. Further extension of the method allowed the synthesis of all 20 natural amino acids and their NCL reactions. The kinetic analysis of the ligations using model peptides shows the MeNbz peptide rapidly converts to arylthioesters that are efficient at NCL. Finally, we show that the new MeDbz linker can be applied to the synthesis of cysteine-rich proteins such the cyclotides Kalata B1 and MCoTI-II through a one cyclization/folding step in the ligation/folding buffer.

摘要

天然化学连接(NCL)在蛋白质合成中的广泛应用促进了寻找方法的研究,这些方法能够有效地合成 C 末端肽硫酯,这是 NCL 的关键中间体。我们开发了一种用于合成硫酯肽前体的 N-酰基脲(Nbz)方法,该方法可以有效地进行巯基交换,生成硫酯肽,然后进行 NCL 反应。然而,一些富含甘氨酸的序列的合成揭示了一些局限性,例如不能转化为 N-酰基脲肽的二酰化产物。在这里,我们引入了一种带有邻氨基(甲基)苯胺(MeDbz)部分的新 N-酰基脲连接体,能够更有效地进行多肽链组装。该方法的通用性通过在不同的偶联条件下合成五肽序列得到了证明,包括在 90°C 的微波加热下,得到了独特的所需 N-酰基-N'-甲基酰基脲(MeNbz)产物。进一步扩展该方法可以合成所有 20 种天然氨基酸及其 NCL 反应。使用模型肽进行的连接动力学分析表明,MeNbz 肽迅速转化为芳基硫酯,在 NCL 中非常有效。最后,我们表明,新的 MeDbz 连接体可以通过在连接/折叠缓冲液中的一个环化/折叠步骤应用于富含半胱氨酸的蛋白质的合成,如环肽 Kalata B1 和 MCoTI-II。

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