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遗传密码扩展方法用于内源性表达蛋白的时间标记。

Genetic Code Expansion Method for Temporal Labeling of Endogenously Expressed Proteins.

机构信息

Microfluidic and Biological Engineering, IMTEK - Department of Microsystems Engineering , University of Freiburg , Georges-Koehler-Allee 103 , 79110 Freiburg , Germany.

BIOSS - Centre for Biological Signalling Studies , University of Freiburg , Schänzlestrasse 18 , 79104 Freiburg , Germany.

出版信息

ACS Chem Biol. 2018 Nov 16;13(11):3049-3053. doi: 10.1021/acschembio.8b00594. Epub 2018 Oct 17.

Abstract

We here present a method that combines genetic code expansion with CRISPR/Cas9 genome engineering to label endogenously expressed proteins with high spatiotemporal resolution. The method exploits the use of an orthogonal tRNA/tRNA synthetase pair in conjugation with noncanonical amino acids to create stop codon read through events. To demonstrate the functionality of the method, we pulse labeled endogenous β-actin and tumor protein p53 with a minimally invasive HA tag at their C-termini. Targeting the protein label with a proximity ligation assay plus real time imaging facilitates seamless quantification of the protein synthesis rate and spatial localization at the single cell level. The presented approach does not interfere with any physiological control of cellular expression, nor did we observe any perturbation of endogenous protein functions.

摘要

我们在此介绍了一种将遗传密码扩展与 CRISPR/Cas9 基因组工程相结合的方法,以高时空分辨率标记内源性表达的蛋白质。该方法利用正交 tRNA/tRNA 合成酶对与非规范氨基酸结合,以创建终止密码子通读事件。为了证明该方法的功能,我们在β-肌动蛋白和肿瘤蛋白 p53 的 C 末端用最小侵入性的 HA 标签脉冲标记内源性蛋白。通过邻近连接测定加上实时成像来靶向蛋白质标签,有助于在单细胞水平上对蛋白质合成速率和空间定位进行无缝定量。所提出的方法不会干扰细胞表达的任何生理控制,我们也没有观察到对内源性蛋白质功能的任何干扰。

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