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Post-Transcriptional Modular Synthetic Receptors.

Xiaowei ZhangLuis Santiago MilleK Eerik KaseniitConnor C CallMeng ZhangYixin HuYunxin XieXiaojing J Gao
Published in: bioRxiv : the preprint server for biology (2024)
Inspired by the power of transcriptional synthetic receptors and hoping to complement them to expand the toolbox for cell engineering, we establish LIDAR (Ligand-Induced Dimerization Activating RNA editing), a modular post-transcriptional synthetic receptor platform that harnesses RNA editing by ADAR. LIDAR is compatible with various receptor architectures in different cellular contexts, and enables the sensing of diverse ligands and the production of functional outputs. Furthermore, LIDAR can sense orthogonal signals in the same cell and produce synthetic spatial patterns, potentially enabling the programming of complex multicellular behaviors. Finally, LIDAR is compatible with compact encoding and can be delivered by synthetic mRNA. Thus, LIDAR expands the family of synthetic receptors, holding the promise to empower basic research and therapeutic applications.
Keyphrases
  • crispr cas
  • gene expression
  • single cell
  • transcription factor
  • cell therapy
  • machine learning
  • signaling pathway
  • stem cells
  • heat shock
  • high throughput
  • nucleic acid