首页> 外文期刊>Journal of the American Chemical Society >Design of a bacterial host for site-specific incorporation of p-bromophenylalanine into recombinant proteins - art. no. JA0626281
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Design of a bacterial host for site-specific incorporation of p-bromophenylalanine into recombinant proteins - art. no. JA0626281

机译:用于将对溴苯丙氨酸位点特异性结合到重组蛋白中的细菌宿主的设计-技术没有。 JA0626281

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摘要

Introduction of a yeast suppressor tRNA (ytRNA(CUA)(Phe)) and a mutant yeast phenylalanyl-tRNA synthetase (yPheRS (T415G)) into an Escherichia coli expression host allows in vivo incorporation of phenylalanine analogues into recombinant proteins in response to amber stop codons. However, high-fidelity incorporation of non-natural amino acids is precluded in this system by mischarging of ytRNA(CUA)(Phe) with tryptophan (Trp) and lysine (Lys). Here we show that ytRNA(CUA)(Phe) and yPheRS can be redesigned to achieve high-fidelity amber codon suppression through delivery of p-bromophenylalanine (pBrF). Two strategies were used to reduce misincorporation of Trp and Lys. First, Lys misincorporation was eliminated by disruption of a Watson-Crick base pair between nucleotides 30 and 40 in ytRNA(CUA)(Phe). Loss of this base pair reduces mischarging by the E. coli lysyl-tRNA synthetase. Second, the binding site of yPheRS was redesigned to enhance specificity for pBrF. Specifically, we used the T415A variant, which exhibits 5-fold higher activity toward pBrF as compared to Trp in ATP-PPi exchange assays. Combining mutant ytRNA(CUA)(Phe) and yPheRS (T415A) allowed incorporation of pBrF into murine dihydrofolate reductase in response to an amber codon with at least 98% fidelity.
机译:将酵母抑制性tRNA(ytRNA(CUA)(Phe))和突变型酵母苯丙氨酰-tRNA合成酶(yPheRS(T415G))引入大肠杆菌表达宿主后,可以响应于琥珀色终止,在体内将苯丙氨酸类似物掺入重组蛋白中。密码子。但是,通过将ytRNA(CUA)(Phe)与色氨酸(Trp)和赖氨酸(Lys)错充,在该系统中排除了高保真非天然氨基酸的掺入。在这里,我们显示可以重新设计ytRNA(CUA)(Phe)和yPheRS,以通过递送对溴苯丙氨酸(pBrF)实现高保真琥珀色密码子抑制。两种策略用于减少Trp和Lys的错误掺入。首先,通过破坏ytRNA(CUA)(Phe)中核苷酸30和40之间的Watson-Crick碱基对消除了Lys的错误掺入。该碱基对的丢失减少了大肠杆菌赖氨酰-tRNA合成酶的错误充电。其次,重新设计了yPheRS的结合位点,以增强对pBrF的特异性。具体而言,我们使用了T415A变体,与ATP-PPi交换分析中的Trp相比,对pBrF的活性高出5倍。突变ytRNA(CUA)(Phe)和yPheRS(T415A)的组合可将pBrF掺入鼠二氢叶酸还原酶中,以响应琥珀密码子,保真度至少为98%。

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