NIS-Seq能够实现与细胞类型无关的光摄动筛选

IF 33.1 1区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Caroline I. Fandrey, Marius Jentzsch, Peter Konopka, Alexander Hoch, Katja Blumenstock, Afraa Zackria, Salie Maasewerd, Marta Lovotti, Dorothee J. Lapp, Florian N. Gohr, Piotr Suwara, Jędrzej Świeżewski, Lukas Rossnagel, Fabienne Gobs, Maia Cristodaro, Lina Muhandes, Rayk Behrendt, Martin C. Lam, Klaus J. Walgenbach, Tobias Bald, Florian I. Schmidt, Eicke Latz, Jonathan L. Schmid-Burgk
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引用次数: 0

摘要

光学池筛选提供了一种更广泛的替代方案,以富集为基础的微扰筛选,使用荧光显微镜在单个细胞中关联表型和微扰。以前的方法在大型的、转录活跃的细胞系中工作得很好,因为它们依赖于内源性表达的条形码转录物的细胞质检测;然而,它们受到可靠的细胞分割、细胞质大小、转录活性和细胞密度的限制。核原位测序(NIS-Seq)通过直接从核基因组DNA中产生明亮的测序信号来筛选高密度和高文库复杂性的有核细胞,扩展了这项技术。通过在单导RNA (sgRNA)下游插入一个倒置的噬菌体启动子,可以独立于细胞转录产生sgRNA的许多RNA拷贝并对其进行测序。在这项研究中,我们对来自两个物种的八种细胞类型进行NIS-Seq基准测试,并进行了四次基因组尺度的光学扰动筛选,确定了炎症相关细胞通路的关键参与者。最后,我们对健康供者血液中的原代人巨噬细胞进行了小规模的集合光学筛选,并在慢病毒转导的人体皮肤组织中证明了条形码识别。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

NIS-Seq enables cell-type-agnostic optical perturbation screening

NIS-Seq enables cell-type-agnostic optical perturbation screening

Optical pooled screening offers a broader-scale alternative to enrichment-based perturbation screening, using fluorescence microscopy to correlate phenotypes and perturbations across single cells. Previous methods work well in large, transcriptionally active cell lines, because they rely on cytosolic detection of endogenously expressed barcoded transcripts; however, they are limited by reliable cell segmentation, cytosol size, transcriptional activity and cell density. Nuclear In-Situ Sequencing (NIS-Seq) expands this technology by creating bright sequencing signals directly from nuclear genomic DNA to screen nucleated cells at high density and high library complexity. By inserting an inverted phage promoter downstream of the single guide RNA (sgRNA), many RNA copies of the sgRNA can be generated and sequenced independently of cellular transcription. In this study, we benchmarked NIS-Seq across eight cell types from two species and performed four genome-scale optical perturbation screens, identifying key players of inflammation-related cellular pathways. Finally, we performed a small-scale pooled optical screen in primary human macrophages from blood of healthy donors and demonstrated barcode identification in lentivirally transduced human skin tissue.

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来源期刊
Nature biotechnology
Nature biotechnology 工程技术-生物工程与应用微生物
CiteScore
63.00
自引率
1.70%
发文量
382
审稿时长
3 months
期刊介绍: Nature Biotechnology is a monthly journal that focuses on the science and business of biotechnology. It covers a wide range of topics including technology/methodology advancements in the biological, biomedical, agricultural, and environmental sciences. The journal also explores the commercial, political, ethical, legal, and societal aspects of this research. The journal serves researchers by providing peer-reviewed research papers in the field of biotechnology. It also serves the business community by delivering news about research developments. This approach ensures that both the scientific and business communities are well-informed and able to stay up-to-date on the latest advancements and opportunities in the field. Some key areas of interest in which the journal actively seeks research papers include molecular engineering of nucleic acids and proteins, molecular therapy, large-scale biology, computational biology, regenerative medicine, imaging technology, analytical biotechnology, applied immunology, food and agricultural biotechnology, and environmental biotechnology. In summary, Nature Biotechnology is a comprehensive journal that covers both the scientific and business aspects of biotechnology. It strives to provide researchers with valuable research papers and news while also delivering important scientific advancements to the business community.
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