4.8 Article

PiggyBac transposon tools for recessive screening identify B-cell lymphoma drivers in mice

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NATURE COMMUNICATIONS
卷 10, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-019-09180-3

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资金

  1. FEBS Long-Term Fellowship
  2. Ministry of Education and Science of the Russian Federation [14.W03.31.0005]
  3. Deutsche Krebshilfe [111305, 111944, 70112480]
  4. German Research Foundation [SFB 1335, RA 1629/2-1, SFB1243, SFB 1321]
  5. Fundacion Maria Cristina Masaveu Peterson
  6. German Cancer Consortium Joint Funding Program

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B-cell lymphoma (BCL) is the most common hematologic malignancy. While sequencing studies gave insights into BCL genetics, identification of non-mutated cancer genes remains challenging. Here, we describe PiggyBac transposon tools and mouse models for recessive screening and show their application to study clonal B-cell lymphomagenesis. In a genome-wide screen, we discover BCL genes related to diverse molecular processes, including signaling, transcriptional regulation, chromatin regulation, or RNA metabolism. Cross-species analyses show the efficiency of the screen to pinpoint human cancer drivers altered by non-genetic mechanisms, including clinically relevant genes dysregulated epigenetically, transcriptionally, or post-transcriptionally in human BCL. We also describe a CRISPR/Cas9-based in vivo platform for BCL functional genomics, and validate discovered genes, such as Rfx7, a transcription factor, and Phip, a chromatin regulator, which suppress lymphomagenesis in mice. Our study gives comprehensive insights into the molecular landscapes of BCL and underlines the power of genome-scale screening to inform biology.

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