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162个残基的S-单糖基化GM2激活蛋白(GM2AP)类似物的定制合成,可方便地构建蛋白质文库。

Tailored Synthesis of 162-Residue S-Monoglycosylated GM2-Activator Protein (GM2AP) Analogues that Allows Facile Access to a Protein Library.

作者信息

Nakamura Takahiro, Sato Kohei, Naruse Naoto, Kitakaze Keisuke, Inokuma Tsubasa, Hirokawa Takatsugu, Shigenaga Akira, Itoh Kohji, Otaka Akira

机构信息

Institute of Biomedical Sciences, Graduate School of Pharmaceutical Sciences, Tokushima University, Shomachi, Tokushima, 770-8505, Japan.

Molecular Profiling Research Center for Drug Discovery, AIST, 2-4-7 Aomi, Koto-ku, Tokyo, 135-0064, Japan.

出版信息

Chembiochem. 2016 Oct 17;17(20):1986-1992. doi: 10.1002/cbic.201600400. Epub 2016 Aug 19.

Abstract

A synthetic protocol for the preparation of 162-residue S-monoglycosylated GM2-activator protein (GM2AP) analogues bearing various amino acid substitutions for Thr69 has been developed. The facile incorporation of the replacements into the protein was achieved by means of a one-pot/N-to-C-directed sequential ligation strategy using readily accessible middle N-sulfanylethylanilide (SEAlide) peptides each consisting of seven amino acid residues. A kinetically controlled ligation protocol was successfully applied to the assembly of three peptide segments covering the GM2AP. The native chemical ligation (NCL) reactivities of the SEAlide peptides can be tuned by the presence or absence of phosphate salts. Furthermore, NCL of the alkyl thioester fragment [GM2AP (1-31)] with the N-terminal cysteinyl prolyl thioester [GM2AP (32-67)] proceeded smoothly to yield the 67-residue prolyl thioester, with the prolyl thioester moiety remaining intact. This newly developed strategy enabled the facile synthesis of GM2AP analogues. Thus, we refer to this synthetic protocol as "tailored synthesis" for the construction of a GM2AP library.

摘要

已开发出一种合成方案,用于制备针对Thr69带有各种氨基酸取代的162个残基的S-单糖基化GM2激活蛋白(GM2AP)类似物。通过一锅法/N到C定向顺序连接策略,利用易于获得的每个由七个氨基酸残基组成的中间N-硫代乙磺酰苯胺(SEAlide)肽,将取代基轻松引入蛋白质中。动力学控制的连接方案成功应用于覆盖GM2AP的三个肽段的组装。SEAlide肽的天然化学连接(NCL)反应性可通过有无磷酸盐来调节。此外,烷基硫酯片段[GM2AP (1-31)]与N端半胱氨酰脯氨硫酯[GM2AP (32-67)]的NCL顺利进行,生成67个残基的脯氨硫酯,脯氨硫酯部分保持完整。这种新开发的策略使GM2AP类似物的合成变得容易。因此,我们将此合成方案称为构建GM2AP文库的“定制合成”。

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