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使用 CasRx 进行全癌种规模的长链非编码 RNA 依赖性的全景式分析

Genome-scale pan-cancer interrogation of lncRNA dependencies using CasRx.

机构信息

Institute of Molecular Oncology and Functional Genomics, School of Medicine, Technische Universität München, Munich, Germany.

Center for Translational Cancer Research (TranslaTUM), School of Medicine, Technische Universität München, Munich, Germany.

出版信息

Nat Methods. 2024 Apr;21(4):584-596. doi: 10.1038/s41592-024-02190-0. Epub 2024 Feb 26.

Abstract

Although long noncoding RNAs (lncRNAs) dominate the transcriptome, their functions are largely unexplored. The extensive overlap of lncRNAs with coding and regulatory sequences restricts their systematic interrogation by DNA-directed perturbation. Here we developed genome-scale lncRNA transcriptome screening using Cas13d/CasRx. We show that RNA targeting overcomes limitations inherent to other screening methods, thereby considerably expanding the explorable space of the lncRNAome. By evolving the screening system toward pan-cancer applicability, it supports molecular and phenotypic data integration to contextualize screening hits or infer lncRNA function. We thereby addressed challenges posed by the enormous transcriptome size and tissue specificity through a size-reduced multiplexed gRNA library termed Albarossa, targeting 24,171 lncRNA genes. Its rational design incorporates target prioritization based on expression, evolutionary conservation and tissue specificity, thereby reconciling high discovery power and pan-cancer representation with scalable experimental throughput. Applied across entities, the screening platform identified numerous context-specific and common essential lncRNAs. Our work sets the stage for systematic exploration of lncRNA biology in health and disease.

摘要

虽然长链非编码 RNA(lncRNA)在转录组中占主导地位,但它们的功能在很大程度上仍未被探索。lncRNA 与编码和调控序列的广泛重叠限制了其通过 DNA 定向扰动进行系统研究。在这里,我们使用 Cas13d/CasRx 开发了全基因组规模的 lncRNA 转录组筛选技术。我们表明,RNA 靶向克服了其他筛选方法固有的局限性,从而大大扩展了 lncRNA 组的可探索空间。通过将筛选系统向泛癌适用性发展,它支持分子和表型数据的整合,以将筛选结果置于背景中或推断 lncRNA 的功能。因此,我们通过一种名为 Albarossa 的大小减小的多路复用 gRNA 文库来解决由巨大的转录组大小和组织特异性带来的挑战,该文库靶向 24,171 个 lncRNA 基因。其合理的设计基于表达、进化保守性和组织特异性进行了目标优先级排序,从而在可扩展的实验通量下实现了高发现能力和泛癌代表性的兼顾。在不同实体中应用该筛选平台,确定了许多特定于上下文和常见的必需 lncRNA。我们的工作为在健康和疾病中系统探索 lncRNA 生物学奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2dd3/11009108/f47cd216d42f/41592_2024_2190_Fig1_HTML.jpg

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