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用于探测 RNA 解旋酶翻译作用的裂解物和基于细胞的测定法。

Lysate and cell-based assays to probe the translational role of RNA helicases.

机构信息

Department of Cell and Tissue Biology, University of California, San Francisco, CA, United States; Graduate Division, University of California, San Francisco, San Francisco, CA, United States.

Department of Cell and Tissue Biology, University of California, San Francisco, CA, United States.

出版信息

Methods Enzymol. 2022;673:141-168. doi: 10.1016/bs.mie.2022.03.032. Epub 2022 Apr 19.

Abstract

Translation initiation is the first step in protein synthesis, during which the small subunit of the ribosome scans the 5' untranslated region (5'UTR) of an mRNA to identify a start codon and commence translation elongation. By unwinding and modulating secondary structures and other RNA features present in the 5'UTR, RNA helicases can regulate ribosome scanning and start codon selection. This chapter presents an approach to measure the effect of RNA helicases on mRNA translation initiation. 5'UTR luciferase reporters are transcribed in vitro and employed in either of two assays. The in vitro assay translates the reporters in a cell-free whole-cell lysate system, which allows for greater biochemical manipulation and tighter control over confounding effects. In the alternative cell-based approach, the reporters are transfected and translated in living cells, which provides a more physiological setup. Either method can be used to investigate how the perturbation of a helicase, such as changes in protein levels or mutations, affects translation initiation at the 5'UTR level. The chapter also discusses alternative approaches, troubleshooting, and further applications of these methods. These assays will provide insights on the role of helicases and other translational factors as regulators of the proteome both in physiological and diseased settings.

摘要

翻译起始是蛋白质合成的第一步,在此过程中核糖体的小亚基扫描 mRNA 的 5'非翻译区(5'UTR),以识别起始密码子并开始翻译延伸。RNA 解旋酶通过解开和调节 5'UTR 中存在的二级结构和其他 RNA 特征,可调节核糖体扫描和起始密码子选择。本章提出了一种测量 RNA 解旋酶对 mRNA 翻译起始作用的方法。5'UTR 荧光素酶报告基因在体外转录,并在两种测定方法中使用。体外测定法在无细胞全细胞裂解物系统中翻译报告基因,这允许进行更多的生化操作,并更好地控制混杂因素的影响。在替代的基于细胞的方法中,报告基因在活细胞中转染和翻译,这提供了更接近生理的设置。这两种方法都可以用来研究 RNA 解旋酶的扰动(例如蛋白质水平的变化或突变)如何影响 5'UTR 水平的翻译起始。本章还讨论了这些方法的替代方法、故障排除和进一步应用。这些测定方法将为在生理和疾病状态下解旋酶和其他翻译因子作为蛋白质组调节剂的作用提供见解。

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