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Published December 20, 2022 | Version v1.0
Preprint Open

High-throughput functional characterization of combinations of transcriptional activators and repressors

  • 1. Biophysics Program, Stanford University
  • 2. Department of Genetics, Stanford University
  • 3. Department of Bioengineering, Stanford University
  • 4. Department of Chemistry, Stanford University
  • 5. Department of Developmental Biology, Stanford University

Description

Despite growing knowledge of the functions of individual human transcriptional effector domains, much less is understood about how multiple effector domains within the same protein combine to regulate gene expression. Here, we measure transcriptional activity for 8,400 effector domain combinations by recruiting them to reporter genes in human cells. In our assay, weak and moderate activation domains synergize to drive strong gene expression, while combining strong activators often results in weaker activation. In contrast, repressors combine linearly and produce full gene silencing, and repressor domains often overpower activation domains. We use this information to build a synthetic transcription factor whose function can be tuned between repression and activation independent of recruitment to target genes by using a small molecule drug. Altogether, we outline the basic principles of how effector domains combine to regulate gene expression and demonstrate their value in building precise and flexible synthetic biology tools. 

Notes

Data and code for preprint: "High-throughput functional characterization of combinations of transcriptional activators and repressors"

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