A genome-wide atlas of human cell morphology

IF 32.1 1区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS Nature Methods Pub Date : 2025-01-27 DOI:10.1038/s41592-024-02537-7
Meraj Ramezani, Erin Weisbart, Julia Bauman, Avtar Singh, John Yong, Maria Lozada, Gregory P. Way, Sanam L. Kavari, Celeste Diaz, Eddy Leardini, Gunjan Jetley, Jenlu Pagnotta, Marzieh Haghighi, Thiago M. Batista, Joaquín Pérez-Schindler, Melina Claussnitzer, Shantanu Singh, Beth A. Cimini, Paul C. Blainey, Anne E. Carpenter, Calvin H. Jan, James T. Neal
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Abstract

A key challenge of the modern genomics era is developing empirical data-driven representations of gene function. Here we present the first unbiased morphology-based genome-wide perturbation atlas in human cells, containing three genome-wide genotype–phenotype maps comprising CRISPR–Cas9-based knockouts of >20,000 genes in >30 million cells. Our optical pooled cell profiling platform (PERISCOPE) combines a destainable high-dimensional phenotyping panel (based on Cell Painting) with optical sequencing of molecular barcodes and a scalable open-source analysis pipeline to facilitate massively parallel screening of pooled perturbation libraries. This perturbation atlas comprises high-dimensional phenotypic profiles of individual cells with sufficient resolution to cluster thousands of human genes, reconstruct known pathways and protein–protein interaction networks, interrogate subcellular processes and identify culture media-specific responses. Using this atlas, we identify the poorly characterized disease-associated TMEM251/LYSET as a Golgi-resident transmembrane protein essential for mannose-6-phosphate-dependent trafficking of lysosomal enzymes. In sum, this perturbation atlas and screening platform represents a rich and accessible resource for connecting genes to cellular functions at scale. An optical pooled cell profiling platform (PERISCOPE) based on Cell Painting and optical sequencing of molecular barcodes was used to develop the first unbiased genome-wide morphology-based perturbation atlas in human cells.

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人类细胞形态的全基因组图谱。
现代基因组学时代的一个关键挑战是开发经验数据驱动的基因功能表示。在这里,我们提出了人类细胞中第一个无偏倚的基于形态学的全基因组扰动图谱,包含三个全基因组基因型-表型图谱,其中包括基于crispr - cas9的敲除> 3000万个细胞中的>20,000个基因。我们的光学池细胞分析平台(PERISCOPE)将可持续的高维表型面板(基于细胞绘画)与分子条形码的光学测序和可扩展的开源分析管道相结合,以促进池扰动库的大规模并行筛选。这种扰动图谱包括单个细胞的高维表型图谱,具有足够的分辨率来聚集数千个人类基因,重建已知途径和蛋白质-蛋白质相互作用网络,询问亚细胞过程并识别培养基特异性反应。利用该图谱,我们确定了特征不明显的疾病相关的TMEM251/LYSET作为高尔基驻留跨膜蛋白,对于甘露糖-6-磷酸依赖的溶酶体酶运输至关重要。总之,这个微扰图谱和筛选平台代表了一个丰富和可访问的资源,用于将基因与细胞功能连接起来。
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来源期刊
Nature Methods
Nature Methods 生物-生化研究方法
CiteScore
58.70
自引率
1.70%
发文量
326
审稿时长
1 months
期刊介绍: Nature Methods is a monthly journal that focuses on publishing innovative methods and substantial enhancements to fundamental life sciences research techniques. Geared towards a diverse, interdisciplinary readership of researchers in academia and industry engaged in laboratory work, the journal offers new tools for research and emphasizes the immediate practical significance of the featured work. It publishes primary research papers and reviews recent technical and methodological advancements, with a particular interest in primary methods papers relevant to the biological and biomedical sciences. This includes methods rooted in chemistry with practical applications for studying biological problems.
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