4.8 Article

Efficient labeling and imaging of protein-coding genes in living cells using CRISPR-Tag

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NATURE COMMUNICATIONS
卷 9, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-018-07498-y

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资金

  1. Thousand Talent Plan Startup
  2. National Natural Science Foundation of China [31872819]
  3. W.M. Keck Foundation
  4. NIH [R21EB021453]
  5. NIH Single Cell Analysis Program [R33EB019784]
  6. NIH Extracellular RNA Communication Consortium [U19CA179512]

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The lack of efficient tools to image non-repetitive genes in living cells has limited our ability to explore the functional impact of the spatiotemporal dynamics of such genes. Here, we addressed this issue by developing a CRISPR-Tag system using one to four highly active sgRNAs to specifically label protein-coding genes with a high signal-to-noise ratio for visualization by wide-field fluorescence microscopy. Our approach involves assembling a CRISPR-Tag within the intron region of a fluorescent protein and then integrating this cassette to N- or C-terminus of a specific gene, which enables simultaneous real-time imaging of protein and DNA of human protein-coding genes, such as HIST2H2BE, LMNA and HSPA8 in living cells. This CRISPR-Tag system, with a minimal size of similar to 250 bp DNA tag, represents an easily and broadly applicable technique to study the spatiotemporal organization of genomic elements in living cells.

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