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.
A genome-wide atlas of human cell morphology.
人类细胞形态的全基因组图谱
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作者:Ramezani Meraj, Weisbart Erin, Bauman Julia, Singh Avtar, Yong John, Lozada Maria, Way Gregory P, Kavari Sanam L, Diaz Celeste, Leardini Eddy, Jetley Gunjan, Pagnotta Jenlu, Haghighi Marzieh, Batista Thiago M, Pérez-Schindler JoaquÃn, Claussnitzer Melina, Singh Shantanu, Cimini Beth A, Blainey Paul C, Carpenter Anne E, Jan Calvin H, Neal James T
| 期刊: | Nature Methods | 影响因子: | 32.100 |
| 时间: | 2025 | 起止号: | 2025 Mar;22(3):621-633 |
| doi: | 10.1038/s41592-024-02537-7 | 种属: | Human |
| 研究方向: | 细胞生物学 | ||
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