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A linear DNA template-based framework for site-specific unnatural amino acid incorporation

机译:基于线性DNA模板的位点特异性非天然氨基酸掺入框架

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摘要

Site-specific incorporation of unnatural amino acids (UNAAs) into proteins using an orthogonal translation system (OTS) has expanded the scope of protein-coding chemistry. The key factor affecting UNAA embedding efficiency is the orthogonality of the OTS. Compared to traditional cell systems, cell-free systems are more convenient to control the reaction process and improve the utilization rate of UNAA. In this study, a linear DNA template-based cell-free unnatural protein synthesis system for rapid high-throughput screening and evolution was proposed. A total of 14 cell extracts were selected for screening out cell extract with high expression level. The result showed that EcAR7 ΔA ΔSer cell extract was optimal for the cell-free system. In addition, the screening results of four UNAAs, p-propargyloxy-l-phenylalanine (pPaF), p-azyl-phenylalanine (pAzF), p-acetyl-l-phenylalanine (pAcF), and p-benzoyl-l-phenylalanine (pBpF), showed that o-aaRS and o-tRNA of pPaF had good orthogonality. A new pair of corresponding o-aaRS and o-tRNA for pBpF was screened out. These results proved that this method could speed up the screening of optimal OTS components for UNAAs with versatile functions.
机译:使用正交翻译系统(OTS)将非天然氨基酸(UNAAs)的特异性氨基酸(UNAAs)掺入蛋白质中,扩大了蛋白质编码化学的范围。影响UNAA嵌入效率的关键因素是OTS的正交性。与传统的细胞系统相比,无细胞系统更方便地控制反应过程,提高UNAA的利用率。在该研究中,提出了一种用于快速高通量筛选和进化的基于线性DNA模板的无天自蛋白质合成系统。选择总共14个细胞提取物用于筛选具有高表达水平的细胞提取物。结果表明,无细胞系统是最佳的Ecar7ΔAΔser细胞提取物。此外,四个UNAA的筛选结果,对P-丙基氧基-1-苯丙氨酸(PPAF),对亚乙酰 - 苯丙氨酸(PAZF),对乙酰-1-苯丙氨酸(PAPF)和P-苯甲酰基-1-苯丙氨酸( PBPF)显示PPAF的OARS和O-TRNA具有良好的正交性。筛选出一对新的相应O-AARS和O-TRNA用于PBPF。这些结果证明,这种方法可以加速筛选具有多种功能的UNAA的最佳OTS组件。

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