Engineering and Rewiring of a Calcium-Dependent Signaling Pathway

ACS Synth Biol. 2020 Aug 21;9(8):2055-2065. doi: 10.1021/acssynbio.0c00133. Epub 2020 Jul 20.

Abstract

An important feature of synthetic biological circuits is their response to physicochemical signals, which enables the external control of cellular processes. Calcium-dependent regulation is an attractive approach for achieving such control, as diverse stimuli induce calcium influx by activating membrane channel receptors. Most calcium-dependent gene circuits use the endogenous nuclear factor of activated T-cells (NFAT) signaling pathway. Here, we employed engineered NFAT transcription factors to induce the potent and robust activation of exogenous gene expression in HEK293T cells. Furthermore, we designed a calcium-dependent transcription factor that does not interfere with NFAT-regulated promoters and potently activates transcription in several mammalian cell types. Additionally, we demonstrate that coupling the circuit to a calcium-selective ion channel resulted in capsaicin- and temperature-controlled gene expression. This engineered calcium-dependent signaling pathway enables tightly controlled regulation of gene expression through different stimuli in mammalian cells and is versatile, adaptable, and useful for a wide range of therapeutic and diagnostic applications.

Keywords: TRPV1 ion channel; calcium signaling; membrane anchoring peptide; nuclear export signal; nuclear factor of activated T-cells; transcription activator-like effectors.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Calcineurin / metabolism
  • Calcium / metabolism*
  • Capsaicin / pharmacology
  • Cell Line
  • Cyclosporine / pharmacology
  • Gene Expression Regulation / drug effects
  • Humans
  • Mice
  • Mutagenesis
  • NFATC Transcription Factors / genetics
  • NFATC Transcription Factors / metabolism*
  • Promoter Regions, Genetic
  • Protein Engineering*
  • Signal Transduction* / drug effects
  • TRPV Cation Channels / metabolism
  • Temperature

Substances

  • NFATC Transcription Factors
  • TRPV Cation Channels
  • TRPV1 protein, human
  • Cyclosporine
  • Calcineurin
  • Capsaicin
  • Calcium