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通过 α-酮酸-羟胺连接进行蛋白质化学合成。

Protein chemical synthesis by α-ketoacid-hydroxylamine ligation.

机构信息

Laboratorium fur Organische Chemie, ETH Zürich, Zürich, Switzerland.

Institute of Transformative Bio-Molecules (WPI-ITbM), Nagoya University, Chikusa, Nagoya, Japan.

出版信息

Nat Protoc. 2016 Jun;11(6):1130-47. doi: 10.1038/nprot.2016.052. Epub 2016 May 26.

Abstract

Total chemical synthesis of proteins allows researchers to custom design proteins without the complex molecular biology that is required to insert non-natural amino acids or the biocontamination that arises from methods relying on overexpression in cells. We describe a detailed procedure for the chemical synthesis of proteins with the α-ketoacid-hydroxylamine (KAHA ligation), using (S)-5-oxaproline (Opr) as a key building block. This protocol comprises two main parts: (i) the synthesis of peptide fragments by standard fluorenylmethoxycarbonyl (Fmoc) chemistry and (ii) the KAHA ligation between fragments containing Opr and a C-terminal peptide α-ketoacid. This procedure provides an alternative to native chemical ligation (NCL) that could be valuable for the synthesis of proteins, particularly targets that do not contain cysteine residues. The ligation conditions-acidic DMSO/H2O or N-methyl-2-pyrrolidinone (NMP)/H2O-are ideally suited for solubilizing peptide segments, including many hydrophobic examples. The utility and efficiency of the protocol is demonstrated by the total chemical synthesis of the mature betatrophin (also called ANGPTL8), a 177-residue protein that contains no cysteine residues. With this protocol, the total synthesis of the betatrophin protein has been achieved in around 35 working days on a multimilligram scale.

摘要

蛋白质的全化学合成使研究人员能够定制设计蛋白质,而无需插入非天然氨基酸所需的复杂分子生物学方法,也无需依赖细胞过表达的方法所产生的生物污染。我们描述了一种使用(S)-5-氧代脯氨酸(Opr)作为关键构建块的通过α-酮酸-羟胺(KAHA 连接)进行蛋白质化学合成的详细程序。该方案包括两个主要部分:(i)通过标准芴甲氧羰基(Fmoc)化学合成肽片段,和(ii)片段之间的 KAHA 连接,其中包含 Opr 和 C 末端肽α-酮酸。该程序提供了一种替代天然化学连接(NCL)的方法,对于蛋白质的合成特别有价值,特别是那些不包含半胱氨酸残基的目标。连接条件-酸性 DMSO/H2O 或 N-甲基-2-吡咯烷酮(NMP)/H2O-非常适合溶解肽段,包括许多疏水性的例子。该方案的实用性和效率通过成熟的 betatrophin(也称为 ANGPTL8)的全化学合成得到证明,betatrophin 是一种含有 177 个残基的蛋白质,不包含半胱氨酸残基。使用该方案,在毫克级规模上,大约 35 个工作日即可实现 betatrophin 蛋白的全合成。

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