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组织切片中基因表达异构体的空间景观。

The spatial landscape of gene expression isoforms in tissue sections.

机构信息

Université Côte d'Azur, CNRS, Institut de Pharmacologie Moléculaire et Cellulaire, F06560 Sophia Antipolis, France.

Department of Gene Technology, School of Engineering Sciences in Chemistry, Biotechnology and Health, KTH Royal Institute of Technology, Science for Life Laboratory, Solna, Sweden.

出版信息

Nucleic Acids Res. 2023 May 8;51(8):e47. doi: 10.1093/nar/gkad169.

Abstract

In situ capturing technologies add tissue context to gene expression data, with the potential of providing a greater understanding of complex biological systems. However, splicing variants and full-length sequence heterogeneity cannot be characterized at spatial resolution with current transcriptome profiling methods. To that end, we introduce spatial isoform transcriptomics (SiT), an explorative method for characterizing spatial isoform variation and sequence heterogeneity using long-read sequencing. We show in mouse brain how SiT can be used to profile isoform expression and sequence heterogeneity in different areas of the tissue. SiT reveals regional isoform switching of Plp1 gene between different layers of the olfactory bulb, and the use of external single-cell data allows the nomination of cell types expressing each isoform. Furthermore, SiT identifies differential isoform usage for several major genes implicated in brain function (Snap25, Bin1, Gnas) that are independently validated by in situ sequencing. SiT also provides for the first time an in-depth A-to-I RNA editing map of the adult mouse brain. Data exploration can be performed through an online resource (https://www.isomics.eu), where isoform expression and RNA editing can be visualized in a spatial context.

摘要

原位捕获技术为基因表达数据添加了组织背景,有可能提供对复杂生物系统的更深入理解。然而,目前的转录组分析方法无法在空间分辨率上对剪接变体和全长序列异质性进行特征描述。为此,我们引入了空间异构体转录组学(SiT),这是一种使用长读测序来描述空间异构体变异和序列异质性的探索性方法。我们展示了在小鼠大脑中,SiT 如何用于分析组织不同区域的异构体表达和序列异质性。SiT 揭示了嗅球不同层之间 Plp1 基因的区域异构体转换,并且使用外部单细胞数据可以提名表达每种异构体的细胞类型。此外,SiT 确定了几个主要与大脑功能相关的基因(Snap25、Bin1、Gnas)的差异异构体使用情况,这些基因通过原位测序得到了独立验证。SiT 还首次提供了成年小鼠大脑的深度 A-to-I RNA 编辑图谱。通过在线资源(https://www.isomics.eu)可以进行数据探索,在空间背景下可视化异构体表达和 RNA 编辑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3e0/10164556/b522211c2a6b/gkad169fig1.jpg

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