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

机译:审查单细胞中替代剪接分析的技术进步和计算方法

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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的替代剪接产生同种型多样性,导致不同的蛋白质是维持蜂窝函数和身份所必需的。通过主要使用本体RNA测序的下一代转录组测序,替代的替代剪接的发现已经彻底改变,其在稳态和应力条件下具有未加工的RNA剪接和常规细胞的错误剪接。单细胞RNA测序研究重点是基因水平表达分析,并揭示了不同细胞类型之间可区分的基因表达签名。单细胞替代拼接是一种新兴的研究领域,其承诺揭示了批量和基因水平分析的转录组动力学。在本文中,我们将讨论单细胞替代剪接分析,单细胞中同种型检测和定量的计算策略的技术进步,以及单细胞替代剪接分析的目前应用对个性化医学的潜在未来贡献。

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