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点点通:一种自动定量分析复杂组织中多重单分子荧光原位杂交 (smFISH) 图像的方法。

dotdotdot: an automated approach to quantify multiplex single molecule fluorescent in situ hybridization (smFISH) images in complex tissues.

机构信息

Lieber Institute for Brain Development, Johns Hopkins Medical Campus, Baltimore, Maryland, USA.

Department of Psychiatry & Behavioral Sciences, Johns Hopkins School of Medicine, Baltimore, MD, USA.

出版信息

Nucleic Acids Res. 2020 Jun 19;48(11):e66. doi: 10.1093/nar/gkaa312.

Abstract

Multiplex single-molecule fluorescent in situ hybridization (smFISH) is a powerful method for validating RNA sequencing and emerging spatial transcriptomic data, but quantification remains a computational challenge. We present a framework for generating and analyzing smFISH data in complex tissues while overcoming autofluorescence and increasing multiplexing capacity. We developed dotdotdot (https://github.com/LieberInstitute/dotdotdot) as a corresponding software package to quantify RNA transcripts in single nuclei and perform differential expression analysis. We first demonstrate robustness of our platform in single mouse neurons by quantifying differential expression of activity-regulated genes. We then quantify spatial gene expression in human dorsolateral prefrontal cortex (DLPFC) using spectral imaging and dotdotdot to mask lipofuscin autofluorescence. We lastly apply machine learning to predict cell types and perform downstream cell type-specific expression analysis. In summary, we provide experimental workflows, imaging acquisition and analytic strategies for quantification and biological interpretation of smFISH data in complex tissues.

摘要

多重单分子荧光原位杂交 (smFISH) 是一种强大的方法,可用于验证 RNA 测序和新兴的空间转录组学数据,但定量仍然是一个计算上的挑战。我们提出了一种在复杂组织中生成和分析 smFISH 数据的框架,同时克服自发荧光并提高多重化能力。我们开发了 dotdotdot(https://github.com/LieberInstitute/dotdotdot)作为一个相应的软件包,用于在单个核中定量 RNA 转录本并进行差异表达分析。我们首先通过定量活性调节基因的差异表达来证明我们平台在单个小鼠神经元中的稳健性。然后,我们使用光谱成像和 dotdotdot 来屏蔽脂褐素自发荧光,从而定量人类背外侧前额叶皮层 (DLPFC) 的空间基因表达。最后,我们应用机器学习来预测细胞类型,并进行下游细胞类型特异性表达分析。总之,我们提供了实验工作流程、成像采集和分析策略,用于在复杂组织中对 smFISH 数据进行定量和生物学解释。

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