Key result
High-throughput CRISPR/Cas9 reporter screen identifies ellipticine as an IL-7-upregulating chemical.
Why the study?
The regulatory mechanism of IL-7 gene expression is not well known, and a systematic approach to screen chemicals that regulate IL-7 expression has not yet been developed.
The development of an IL-7 eGFP reporter cell line enables high-throughput screening for novel IL-7 upregulating drugs for immunodeficiency diseases.
IL-7 reporter lines enable chemical HTS; leaves open clinical translation for immunodeficiency therapies.
Interleukin-7 (IL-7) is a cytokine essential for T cell homeostasis, and is clinically important. However, the regulatory mechanism of IL-7 gene expression is not well known, and a systematic approach to screen chemicals that regulate IL-7 expression has not yet been developed. In this study, we attempted to develop human reporter cell lines using CRISPR/Cas9-mediated genome editing technology. For this purpose, we designed donor DNA that contains an enhanced green fluorescent protein (eGFP) gene, drug selection cassette, and modified homologous arms which are considered to enhance the translation of the eGFP reporter transcript, and also a highly efficient single-guide RNA with a minimal off-target effect to target the IL-7 start codon region. By applying this system, we established IL-7 eGFP reporter cell lines that could report IL-7 gene transcription based on the eGFP protein signal. Furthermore, we utilized the cells to run a pilot screen campaign for IL-7-upregulating chemicals in a high-throughput format, and identified a chemical that can up-regulate IL-7 gene transcription. Collectively, these results suggest that our IL-7 reporter system can be utilized in large-scale chemical library screening to reveal novel IL-7 regulatory pathways and to identify potential drugs for development of new treatments in immunodeficiency disease.
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Cho et al. (2016) studied this question. CRISPR/Cas9-mediated IL-7 eGFP reporter system was evaluated on Establishment of IL-7 eGFP reporter cell lines and identification of IL-7 upregulating chemicals. A CRISPR/Cas9-mediated IL-7 eGFP reporter human cell line system was successfully established and utilized in a high-throughput screen to identify ellipticine as an IL-7-upregulating chemical.
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