TY - JOUR
T1 - Proof-of-Concept of a DNA-Based Recording System for High-Throughput Functional Gene Screening
AU - Kato, Shoichi
AU - Ikemoto, Atsushi
AU - Isayama, Jun
AU - Takimoto, Tetsuya
AU - Saya, Hideyuki
AU - Hamada, Ken ichi
N1 - Publisher Copyright:
© 2026 American Chemical Society
PY - 2026/5/15
Y1 - 2026/5/15
N2 - Pooled genetic screening enables systematic causal analyses, but a lower cost and simpler handling remain desirable. Here we present PiER (Perturbation-induced Intracellular Events Recorder), a pooled screening technology that couples gene perturbation with signal recording and does not require single-cell isolation, cell sorting, or survival selection. PiER consists of three DNA domains: a Perturbation domain that introduces gene-specific perturbations; a Response domain that expresses a recombinase upon pathway activation; and a Recorder domain whose sequence is permanently rewritten by the recombinase, storing perturbation-response histories in situ. This architecture enables the next-generation sequencing readout of perturbations and response histories from bulk DNA. In HEK293 cells, a WNT-responsive Response/Recorder construct produced dose-dependent recombination detected by a fluorescent reporter and qPCR, and a second cAMP/CREB-responsive pilot vector showed stimulus-dependent recombination. Using the lentiviral delivery of a pooled shRNA PiER library, we identified WNT-related candidates. PiER provides a versatile, scalable tool for functional genomics and drug-target discovery.
AB - Pooled genetic screening enables systematic causal analyses, but a lower cost and simpler handling remain desirable. Here we present PiER (Perturbation-induced Intracellular Events Recorder), a pooled screening technology that couples gene perturbation with signal recording and does not require single-cell isolation, cell sorting, or survival selection. PiER consists of three DNA domains: a Perturbation domain that introduces gene-specific perturbations; a Response domain that expresses a recombinase upon pathway activation; and a Recorder domain whose sequence is permanently rewritten by the recombinase, storing perturbation-response histories in situ. This architecture enables the next-generation sequencing readout of perturbations and response histories from bulk DNA. In HEK293 cells, a WNT-responsive Response/Recorder construct produced dose-dependent recombination detected by a fluorescent reporter and qPCR, and a second cAMP/CREB-responsive pilot vector showed stimulus-dependent recombination. Using the lentiviral delivery of a pooled shRNA PiER library, we identified WNT-related candidates. PiER provides a versatile, scalable tool for functional genomics and drug-target discovery.
KW - Cell signaling reporter
KW - DNA recording
KW - Functional genomics
KW - Pooled shRNA screening
KW - Site-specific recombinase
KW - WNT/β-catenin signaling
UR - https://www.scopus.com/pages/publications/105038830985
UR - https://www.scopus.com/pages/publications/105038830985#tab=citedBy
U2 - 10.1021/acssynbio.5c00671
DO - 10.1021/acssynbio.5c00671
M3 - Letter
C2 - 41983614
AN - SCOPUS:105038830985
SN - 2161-5063
VL - 15
SP - 1751
EP - 1760
JO - ACS Synthetic Biology
JF - ACS Synthetic Biology
IS - 5
ER -