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Updated: Feb 7, 2026

Development of Compendium for Esophageal Squamous Cell Carcinoma
Published on: April 12, 2024
Development of an integrated CRISPRi targeting ΔNp63 for treatment of squamous cell carcinoma
Masakazu Yoshida1, Etsuko Yokota1, Tetsushi Sakuma2
1Department of General Surgery, Kawasaki Medical School, Okayama, 700-8505 Japan.
Abstract:
TP63 encodes TAp63, which is functionally similar to the tumor suppressor TP53, and ΔNp63, which lacks the transcription-activating domain of TAp63 and appears potently oncogenic in squamous cell carcinomas (SCCs). In this study, we developed an integrated CRISPR interference (CRISPRi) system to selectively suppress ΔNp63 (CRISPRiΔNp63). We engineered this CRISPRi using tandemized guide RNA expression cassettes that targeted the 50 to 100 bp downstream of the transcription start site of ΔNp63 in combination with inactivated Cas9 linked to the transcription repression module Krüppel-associated box repressor domain. The plasmid vector harboring CRISPRiΔNp63 repressed ΔNp63 transcription in lung and esophageal SCC cells. Likewise, Ad-CRISPRiΔNp63, an all-in-one adenoviral vector containing the tandemized gRNAs and dCas9/KRAB expression cassette suppressed ΔNp63 expression in SCC cells. Ad-CRISPRiΔNp63 also effectively decreased cell proliferation and colony formation and induced apoptosis in lung and esophageal SCC cells in vitro and significantly inhibited tumor growth in a mouse lung SCC xenograft model in vivo. These results indicate that ΔNp63 suppression using CRISPRiΔNp63 may be an effective strategy for treating lung and esophageal SCC.
Insights
Researchers developed a CRISPR interference system to suppress ΔNp63, an oncogenic protein in squamous cell carcinomas (SCCs). This targeted suppression effectively reduced tumor growth in preclinical models, suggesting a potential new therapy for SCCs.
Area of Science:
- Molecular Biology
- Cancer Research
- Gene Regulation
Background:
- TP63 gene encodes TAp63 and ΔNp63 isoforms.
- ΔNp63 is oncogenic in squamous cell carcinomas (SCCs).
- Targeting ΔNp63 could be a therapeutic strategy for SCCs.
Purpose of the Study:
- To develop a CRISPR interference (CRISPRi) system for selective ΔNp63 suppression.
- To evaluate the efficacy of CRISPRiΔNp63 in inhibiting SCC cell growth and tumor progression.
Main Methods:
- Engineered a CRISPR interference system (CRISPRiΔNp63) targeting ΔNp63 transcription.
- Utilized tandemized guide RNA expression cassettes and a dCas9-KRAB repressor domain.
- Tested CRISPRiΔNp63 in plasmid and adenoviral vector formats (Ad-CRISPRiΔNp63) in SCC cell lines.
- Assessed effects on cell proliferation, apoptosis, and tumor growth in vivo.
Main Results:
- CRISPRiΔNp63 effectively repressed ΔNp63 transcription in lung and esophageal SCC cells.
- Ad-CRISPRiΔNp63 suppressed ΔNp63 expression, decreased cell proliferation, and induced apoptosis in vitro.
- Ad-CRISPRiΔNp63 significantly inhibited tumor growth in a mouse lung SCC xenograft model.
Conclusions:
- ΔNp63 suppression via CRISPRiΔNp63 is a viable strategy for SCC treatment.
- This approach shows promise for therapeutic intervention in lung and esophageal SCCs.
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