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基于抑制 tRNA 的生物传感器用于检测分析物。

Suppressor tRNA-based Biosensors for Detecting Analytes.

机构信息

Proteo-Science Center, Ehime University.

出版信息

Anal Sci. 2021 Mar 10;37(3):407-414. doi: 10.2116/analsci.20SCR01. Epub 2020 Oct 2.

Abstract

A nonsense suppressor tRNA (sup-tRNA) allows a natural or non-natural amino acid to be assigned to a nonsense codon in mRNA. Sup-tRNAs were utilized initially for studying tRNA functions but lately are used more for protein engineering and gene regulation. In the latter application, a sup-tRNA that is aminoacylated with a natural amino acid by the corresponding aminoacyl-tRNA synthetase is used to express a full-length natural protein from its mutated gene with a nonsense codon in the middle. This type of sup-tRNA has recently been artificially evolved to develop biosensors. In these biosensors, an analyte induces the processing of an engineered premature sup-tRNA into a mature sup-tRNA, which suppresses the corresponding nonsense codon incorporated into a gene, encoding an easily detectable reporter protein. This review introduces sup-tRNA-based biosensors that the author's group has developed by utilizing bacterial and eukaryotic cell-free translation systems.

摘要

一种无意义抑制 tRNA(sup-tRNA)允许将天然或非天然氨基酸分配到 mRNA 中的无意义密码子上。最初,sup-tRNAs 被用于研究 tRNA 功能,但最近更多地用于蛋白质工程和基因调控。在后一种应用中,由相应的氨酰-tRNA 合成酶氨酰化的 sup-tRNA 用于从带有中间无意义密码子的突变基因中表达全长天然蛋白。这种类型的 sup-tRNA 最近已被人为进化以开发生物传感器。在这些生物传感器中,分析物诱导工程化的过早 sup-tRNA 加工成成熟 sup-tRNA,从而抑制掺入基因中的相应无意义密码子,该基因编码易于检测的报告蛋白。这篇综述介绍了作者小组利用细菌和真核无细胞翻译系统开发的基于 sup-tRNA 的生物传感器。

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