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Site-specific chemical protein conjugation using genetically encoded aldehyde tags

机译:使用基因编码的醛标签的特定于位点的化学蛋白质偶联

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摘要

We describe a method for modifying proteins site-specifically using a chemoenzymatic bioconjugation approach. Formylglycine generating enzyme (FGE) recognizes a pentapeptide consensus sequence, CxPxR, and it specifically oxidizes the cysteine in this sequence to an unusual aldehyde-bearing formylglyine. The FGE recognition sequence, or aldehyde tag, can be inserted into heterologous recombinant proteins produced in either prokaryotic or eukaryotic expression systems. The conversion of cysteine to formylglycine is accomplished by co-overexpression of FGE, either transiently or as a stable cell line, and the resulting aldehyde can be selectively reacted with α-nucleophiles to generate a site-selectively modified bioconjugate. This protocol outlines both the generation and the analysis of proteins aldehyde-tagged at their termini and the methods for chemical conjugation to the formylglycine. The process of generating aldehyde-tagged protein followed by chemical conjugation and purification takes 20 d.
机译:我们描述了一种使用化学酶生物共轭方法修饰蛋白质位点特异性的方法。产生甲酰甘氨酸的酶(FGE)识别五肽共有序列CxPxR,并将该序列中的半胱氨酸特异性氧化成不常见的带有醛的甲酰甘氨酸。可以将FGE识别序列或醛标记插入原核或真核表达系统中产生的异源重组蛋白中。半胱氨酸向甲酰基甘氨酸的转化是通过FGE的瞬时或作为稳定细胞系的共过量表达而实现的,所得的醛可与α-亲核试剂选择性反应以生成位点选择性修饰的生物缀合物。该协议概述了在其末端带有醛标记的蛋白质的产生和分析,以及与甲酰甘氨酸化学偶联的方法。产生醛标记蛋白的过程,然后进行化学缀合和纯化,需要20 d。

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