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在类器官中单细胞 CRISPR 筛选揭示了肝细胞分化和成熟的决定因素。

In-organoid single-cell CRISPR screening reveals determinants of hepatocyte differentiation and maturation.

机构信息

State Key Laboratory of Common Mechanism Research for Major Diseases, Department of Biochemistry and Molecular Biology, Institute of Basic Medical Sciences Chinese Academy of Medical Sciences, School of Basic Medicine Peking, Union Medical College, Beijing, 100005, China.

State Key Laboratory of Genetic Engineering, School of Life Sciences, Fudan University, Shanghai, 200438, China.

出版信息

Genome Biol. 2023 Oct 31;24(1):251. doi: 10.1186/s13059-023-03084-8.

Abstract

BACKGROUND

Harnessing hepatocytes for basic research and regenerative medicine demands a complete understanding of the genetic determinants underlying hepatocyte differentiation and maturation. Single-cell CRISPR screens in organoids could link genetic perturbations with parallel transcriptomic readout in single cells, providing a powerful method to delineate roles of cell fate regulators. However, a big challenge for identifying key regulators during data analysis is the low expression levels of transcription factors (TFs), which are difficult to accurately estimate due to noise and dropouts in single-cell sequencing. Also, it is often the changes in TF activities in the transcriptional cascade rather than the expression levels of TFs that are relevant to the cell fate transition.

RESULTS

Here, we develop Organoid-based Single-cell CRISPR screening Analyzed with Regulons (OSCAR), a framework using regulon activities as readouts to dissect gene knockout effects in organoids. In adult-stem-cell-derived liver organoids, we map transcriptomes in 80,576 cells upon 246 perturbations associated with transcriptional regulation of hepatocyte formation. Using OSCAR, we identify known and novel positive and negative regulators, among which Fos and Ubr5 are the top-ranked ones. Further single-gene loss-of-function assays demonstrate that Fos depletion in mouse and human liver organoids promote hepatocyte differentiation by specific upregulation of liver metabolic genes and pathways, and conditional knockout of Ubr5 in mouse liver delays hepatocyte maturation.

CONCLUSIONS

Altogether, we provide a framework to explore lineage specifiers in a rapid and systematic manner, and identify hepatocyte determinators with potential clinical applications.

摘要

背景

为了进行基础研究和再生医学,需要充分了解肝细胞分化和成熟的遗传决定因素。类器官中的单细胞 CRISPR 筛选可以将遗传扰动与单细胞中的平行转录组读数联系起来,为阐明细胞命运调控因子的作用提供了一种强大的方法。然而,在数据分析中识别关键调控因子的一个主要挑战是转录因子 (TF) 的表达水平低,由于单细胞测序中的噪声和缺失,这些转录因子很难准确估计。此外,与细胞命运转变相关的往往是转录级联中 TF 活性的变化,而不是 TF 的表达水平。

结果

在这里,我们开发了基于类器官的单细胞 CRISPR 筛选分析调控子(OSCAR),这是一种使用调控子活性作为读数的框架,用于剖析类器官中基因敲除的影响。在成人干细胞来源的肝类器官中,我们在 80576 个细胞中绘制了与肝细胞形成的转录调控相关的 246 种扰动的转录组图谱。使用 OSCAR,我们确定了已知和新的正调控子和负调控子,其中 Fos 和 Ubr5 是排名最高的。进一步的单基因功能丧失实验表明,在人和小鼠的肝类器官中,Fos 的缺失通过特异性上调肝代谢基因和途径促进肝细胞分化,而 Ubr5 在小鼠肝中的条件性敲除则延迟了肝细胞的成熟。

结论

总之,我们提供了一种快速系统地探索谱系特化因子的框架,并确定了具有潜在临床应用的肝细胞决定因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f106/10617096/2c19a5353377/13059_2023_3084_Fig1_HTML.jpg

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