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基于流式细胞术的体内方法用于计数正在翻译的核糖体及翻译延伸速率

Flow-based In Vivo Method to Enumerate Translating Ribosomes and Translation Elongation Rate.

作者信息

Seedhom Mina O, Dersh Devin, Yewdell Jonathan W

机构信息

Diabetes Center of Excellence, Department of Molecular Medicine, University of Massachusetts Medical School, Worcester, MA, USA.

Department of Biochemistry and Biophysics, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA, USA.

出版信息

Bio Protoc. 2025 Jan 20;15(2):e5165. doi: 10.21769/BioProtoc.5165.

Abstract

Protein synthesis is by far the most energetically costly cellular process in rapidly dividing cells. Quantifying translating ribosomes in individual cells and their average mRNA transit rate is arduous. Quantitating assembled ribosomes in individual cells requires electron microscopy and does not indicate ribosome translation status. Measurement of average transit rates entails in vitro pulse-chase radiolabeling of isolated cells or ribosome profiling after ribosome runoff, which is expensive and extremely demanding technically. Here, we detail protocols based on ribosome-mediated nascent chain puromycylation, harringtonine to stall initiating ribosomes while allowing ribosome elongation to continue normally, and cycloheximide to freeze translating ribosomes in place. Each compound is delivered intravenously to mice in the appropriate order, and after ex vivo cell fixation and permeabilization, translating ribosome numbers and transit rates are measured by flow cytometry using a directly conjugated puromycin-specific antibody. Key features • Measure relative numbers of translating ribosomes in mixed single-cell preparations. • Quantitate relative in vivo ribosome transit rates in mixed single-cell preparations. • Detect ribosome stalling in vivo.

摘要

在快速分裂的细胞中,蛋白质合成是迄今为止能量消耗最高的细胞过程。对单个细胞中的翻译核糖体及其平均mRNA转运速率进行定量非常困难。对单个细胞中的组装核糖体进行定量需要电子显微镜,并且无法表明核糖体的翻译状态。测量平均转运速率需要对分离的细胞进行体外脉冲追踪放射性标记,或者在核糖体延伸结束后进行核糖体谱分析,这既昂贵又对技术要求极高。在这里,我们详细介绍了基于核糖体介导的新生链嘌呤霉素化、使用三尖杉酯碱使起始核糖体停滞同时允许核糖体延伸正常继续、以及使用环己酰亚胺使翻译中的核糖体原地冻结的实验方案。每种化合物按照适当顺序静脉注射给小鼠,在体外细胞固定和通透处理后,使用直接偶联的嘌呤霉素特异性抗体通过流式细胞术测量翻译核糖体的数量和转运速率。关键特性 • 测量混合单细胞制剂中翻译核糖体的相对数量。 • 定量混合单细胞制剂中体内核糖体的相对转运速率。 • 检测体内核糖体停滞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03a4/11769755/33e659e457d8/BioProtoc-15-2-5165-g001.jpg

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