Principles, challenges, and advances in ribosome profiling: from bulk to low-input and single-cell analysis.

Qiuyi Wang, Yuanhui Mao
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Abstract

Ribosome profiling has revolutionized our understanding of gene expression regulation by providing a snapshot of global translation in vivo. This powerful technique enables the investigation of the dynamics of translation initiation, elongation, and termination, and has provided insights into the regulation of protein synthesis under various conditions. Despite its widespread adoption, challenges persist in obtaining high-quality ribosome profiling data. In this review, we discuss the fundamental principles of ribosome profiling and related methodologies, including selective ribosome profiling and translation complex profiling. We also delve into quality control to assess the reliability of ribosome profiling datasets, and the efforts to improve data quality by modifying the standard procedures. Additionally, we highlight recent advancements in ribosome profiling that enable the transition from bulk to low-input and single-cell applications. Single-cell ribosome profiling has emerged as a crucial tool for exploring translation heterogeneity within specific cell populations. However, the challenges of capturing mRNAs efficiently and the sparse nature of footprint reads in single-cell ribosome profiling present ongoing obstacles. The need to refine ribosome profiling techniques remains, especially when used at the single-cell level.

核糖体分析的原理、挑战和进展:从大量到低输入和单细胞分析。
核糖体分析通过提供体内全局翻译的快照,彻底改变了我们对基因表达调控的理解。这种强大的技术使研究翻译起始、延伸和终止的动力学成为可能,并为各种条件下蛋白质合成的调控提供了见解。尽管它被广泛采用,但在获得高质量核糖体分析数据方面仍然存在挑战。在这篇综述中,我们讨论了核糖体分析的基本原理和相关的方法,包括选择性核糖体分析和翻译复合体分析。我们还深入研究了质量控制,以评估核糖体分析数据集的可靠性,并通过修改标准程序来提高数据质量。此外,我们强调了核糖体分析的最新进展,使从批量到低输入和单细胞应用的转变。单细胞核糖体分析已成为探索特定细胞群内翻译异质性的重要工具。然而,在单细胞核糖体分析中,有效捕获mrna的挑战和足迹读取的稀缺性提出了持续的障碍。改进核糖体分析技术的需要仍然存在,特别是在单细胞水平上使用时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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