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Cell Type-Agnostic Optical Perturbation Screening Using Nuclear In-Situ Sequencing (NIS-Seq)

Cell Type-Agnostic Optical Perturbation Screening Using Nuclear In-Situ Sequencing (NIS-Seq)

来源:bioRxiv_logobioRxiv
英文摘要

Genome-scale perturbation screening is widely used to identify disease-relevant cellular proteins serving as potential drug targets. However, most biological processes are not compatible with commonly employed perturbation screening methods, which rely on FACS- or growth-based enrichment of cells. Optical pooled screening instead uses fluorescence microscopy to determine the phenotype in single cells, and subsequently to identify individual perturbagens in the same cells. Published methods rely on cytosolic detection of endogenously expressed barcoded transcripts, which limits application to large, transcriptionally active cell types, and often relies on local clusters of clonal cells for unequivocal barcode assignment, thus precluding genome-scale screening for many biological processes. Nuclear In-Situ Sequencing (NIS-Seq) solves these shortcomings by creating bright sequencing signals directly from nuclear genomic DNA, enabling screening any nucleus-containing cell type at high density and high library complexity. We benchmark NIS-Seq by performing three genome-scale optical screens in live cells, identifying key players of inflammation-related cellular pathways.

Jentzsch Marius、Maasewerd Salie、Latz Eicke、Schmid-Burgk Jonathan L.、Zackria Afraa Aqeel、Fandrey Caroline I.、Konopka Peter

10.1101/2024.01.18.576210

生物科学研究方法、生物科学研究技术细胞生物学分子生物学

Jentzsch Marius,Maasewerd Salie,Latz Eicke,Schmid-Burgk Jonathan L.,Zackria Afraa Aqeel,Fandrey Caroline I.,Konopka Peter.Cell Type-Agnostic Optical Perturbation Screening Using Nuclear In-Situ Sequencing (NIS-Seq)[EB/OL].(2025-03-28)[2025-04-26].https://www.biorxiv.org/content/10.1101/2024.01.18.576210.点此复制

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