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A new strategy for glycoprotein synthesis: ligation of synthetic glycopeptides with truncated proteins expressed in E. coli as TEV protease cleavable fusion protein.

机译:糖蛋白合成的新策略:将合成的糖肽与在大肠杆菌中表达为TEV蛋白酶可裂解融合蛋白的截短蛋白连接。

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摘要

We report here the use of TEV protease cleavable fusion proteins to produce glycosylated bioactive peptides and proteins. Bacterial expression was utilized to produce two fusion proteins, GPRT-C37-H6 and His-tagged interleukin-2 (amino acids 6-133), which when cleaved by the tobacco etch virus NIa protease (TEV protease) to generate HIV entry inhibitor peptide C37-H6 and a truncated version of the cytokine interleukin-2, both containing N-terminal cysteines. The N-terminal cysteine containing C37-H6 and truncated interleukin-2 were then joined to a synthetic glycopeptide thioester utilizing native chemical ligation under nondenaturing and denaturing conditions, respectively. The ligations of the glycopeptide to the C37-H6 peptide and the truncated interleukin-2 protein both proceeded in high yield, though the size, and physical properties of the two polypeptides differ greatly.
机译:我们在这里报告使用TEV蛋白酶可裂解的融合蛋白来产生糖基化的生物活性肽和蛋白质。利用细菌表达产生两种融合蛋白,GPRT-C37-H6和His标记的白介素2(氨基酸6-133),当它们被烟草蚀刻病毒NIa蛋白酶(TEV蛋白酶)切割时产生HIV进入抑制剂肽C37-H6和细胞因子白介素2的截短版本均包含N端半胱氨酸。然后分别在非变性和变性条件下利用天然化学连接将含有C37-H6和截短的白介素-2的N-末端半胱氨酸连接至合成的糖肽硫酯。糖肽与C37-H6肽和截短的白介素2蛋白的连接均以高产率进行,尽管两种多肽的大小和物理性质差异很大。

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