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检测 Myc 依赖性翻译变化在细胞内稳态和癌症中的作用。

Examining Myc-Dependent Translation Changes in Cellular Homeostasis and Cancer.

机构信息

Department of Urology, University of California, San Francisco, San Francisco, CA, USA.

Helen Diller Family Comprehensive Cancer Center, University of California, San Francisco, San Francisco, CA, USA.

出版信息

Methods Mol Biol. 2021;2318:255-266. doi: 10.1007/978-1-0716-1476-1_13.

Abstract

A central component of Myc's role as a master coordinator of energy metabolism and biomass accumulation is its ability to increase the rate of protein synthesis, driving cell cycle progression, and proliferation. Importantly, Myc-induced alterations in both global and specific mRNA translation is a key determinant of Myc's oncogenic function. Herein, we provide five assays to enable researchers to measure global protein synthesis changes, to identify the translatome uniquely regulated by Myc and to investigate the mechanisms generating the tailored Myc translation network. Metabolic labeling of cells with S-containing methionine and cysteine in culture and O-propargyl-puromycin (OP-Puro) incorporation in vivo are presented as methods to measure the overall rate of global protein synthesis. Isolation of polysome-associated mRNAs followed by quantitative real-time PCR (qRT-PCR) and the toeprint assay enable the detection of altered translation of specific mRNAs and isoforms, and visualization of differential ribosomal engagement at start codons uniquely mediated by Myc activation, respectively. Finally, the translation initiation reporter assay is utilized to uncover the molecular mechanism mediating altered translation initiation of a specific mRNA. Together, the protocols detailed in this chapter can be used to illuminate how and to what degree Myc-dependent regulation of translation influences homeostatic cellular functions as well as tumorigenesis.

摘要

Myc 作为能量代谢和生物量积累的主要协调因子,其作用的一个核心组成部分是它能够增加蛋白质合成的速度,推动细胞周期进程和增殖。重要的是,Myc 诱导的全球和特定 mRNA 翻译的改变是 Myc 致癌功能的关键决定因素。在此,我们提供了五种测定方法,使研究人员能够测量整体蛋白质合成的变化,鉴定受 Myc 调控的独特的翻译组,并研究产生定制的 Myc 翻译网络的机制。用含有 S 的蛋氨酸和半胱氨酸对细胞进行代谢标记,并在体内掺入 O-炔丙基-嘌呤霉素 (OP-Puro),这两种方法被用来测量整体的蛋白质合成率。分离多核糖体相关的 mRNAs,然后进行定量实时 PCR(qRT-PCR)和足迹测定,分别可以检测特定 mRNAs 和异构体翻译的改变,以及 Myc 激活介导的起始密码子处核糖体差异结合的可视化。最后,翻译起始报告测定用于揭示调节特定 mRNA 翻译起始的分子机制。总之,本章详细描述的方案可用于阐明 Myc 依赖性翻译调控如何以及在何种程度上影响细胞的稳态功能以及肿瘤发生。

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