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用于治疗应用的蛋白质中非常规氨基酸的选择性和特异性整合。

Selective and Site-Specific Incorporation of Nonstandard Amino Acids Within Proteins for Therapeutic Applications.

机构信息

Department of Chemical and Biomolecular Engineering, University of Delaware, Newark, DE, USA.

出版信息

Methods Mol Biol. 2024;2720:35-53. doi: 10.1007/978-1-0716-3469-1_3.

Abstract

The incorporation of nonstandard amino acids (nsAAs) within protein sequences has broadened the chemical functionalities available for use in the study, prevention, or treatment of disease. The ability to genetically encode the introduction of nsAAs at precise sites of target recombinant proteins has enabled numerous applications such as bioorthogonal conjugation, thrombin inhibition, intrinsic biological containment of live organisms, and immunochemical termination of self-tolerance. Genetic systems that perform critical steps in enabling nsAA incorporation are known as orthogonal translation systems or orthogonal aminoacyl-tRNA synthetase/tRNA pairs. In Escherichia coli, several of these have been designed to accept novel nsAAs. Certain endogenous proteins, codon context, and standard amino acid concentrations can affect the yield of recombinant protein, the rate of nsAA incorporation within off-target proteins, and the rate of misincorporation due to near-cognate suppression or misacylation of orthogonal tRNA with standard amino acids. As a result, a significant body of work has been performed in engineering the E. coli genome to alleviate these issues. Here, we describe common methods applicable to nsAA incorporation within proteins in E. coli for sufficient purity and characterization for downstream therapeutic applications.

摘要

在蛋白质序列中引入非标准氨基酸 (nsAA) 拓宽了可用于疾病研究、预防或治疗的化学功能。通过遗传编码在目标重组蛋白的精确位置引入 nsAA 的能力已经实现了许多应用,例如生物正交缀合、凝血酶抑制、活生物体的固有生物控制以及自身耐受的免疫化学终止。能够执行 nsAA 掺入关键步骤的遗传系统被称为正交翻译系统或正交氨酰-tRNA 合成酶/tRNA 对。在大肠杆菌中,已经设计了几种能够接受新型 nsAA 的系统。某些内源性蛋白质、密码子背景和标准氨基酸浓度会影响重组蛋白的产量、非靶标蛋白中 nsAA 掺入的速度以及由于近同功抑制或标准氨基酸的正交 tRNA 的错误酰化导致的错误掺入的速度。因此,已经进行了大量的工作来工程改造大肠杆菌基因组以缓解这些问题。在这里,我们描述了适用于大肠杆菌中蛋白质内 nsAA 掺入的常见方法,这些方法可用于下游治疗应用的足够纯度和表征。

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