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Technological advances and computational approaches for alternative splicing analysis in single cells

机译:单细胞替代剪接分析的技术进步和计算方法

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摘要

Alternative splicing of RNAs generates isoform diversity, resulting in different proteins that are necessary for maintaining cellular function and identity. The discovery of alternative splicing has been revolutionized by next-generation transcriptomic sequencing mainly using bulk RNA-sequencing, which has unravelled RNA splicing and mis-splicing of normal cells under steady-state and stress conditions. Single-cell RNA-sequencing studies have focused on gene-level expression analysis and revealed gene expression signatures distinguishable between different cellular types. Single-cell alternative splicing is an emerging area of research with the promise to reveal transcriptomic dynamics invisible to bulk- and gene-level analysis. In this review, we will discuss the technological advances for single-cell alternative splicing analysis, computational strategies for isoform detection and quantitation in single cells, and current applications of single-cell alternative splicing analysis and its potential future contributions to personalized medicine.
机译:RNA的可变剪接产生同工型多样性,从而产生维持细胞功能和特性所必需的不同蛋白质。主要使用批量RNA测序的下一代转录组测序已彻底改变了替代剪接的发现,这种测序已揭开了RNA剪接的序幕,并在稳态和应激条件下对正常细胞进行了错误剪接。单细胞RNA测序研究专注于基因水平表达分析,并揭示了可区分不同细胞类型的基因表达特征。单细胞替代剪接是一个新兴的研究领域,有望揭示在批量和基因水平分析中不可见的转录组动力学。在这篇综述中,我们将讨论单细胞替代剪接分析的技术进步,单细胞异构体检测和定量的计算策略,以及单细胞替代剪接分析的当前应用及其对个性化医学的潜在未来贡献。

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