2607139-80-8
Chemical Structure
PolQi1
- CAS No.: 2607139-80-8
- Formula:C18H14ClF5N4O2
- Molecular Weight:448.77
InChIKey: NSJYVVAPOLKTGZ-LBPRGKRZSA-N
SMILES: CN(C1=C(C(Cl)=C(C=C1)F)F)C([C@H]2N(C3=CC(C(F)(F)F)=CC(C)=N3)C(NC2)=O)=O
Biological Activity: PolQi1 is a selective inhibitor targeting the Polθ domain of DNA polymerase. PolQi1 inhibits the Polθ-mediated microhomology end joining (TMEJ/alt-EJ) pathway, reducing insertion/deletion (Indels) and imprecise editing events during DNA repair. PolQi1 can enhance the efficiency and accuracy of homology-directed repair (HDR) or Prime editing, and reduce off-target effects; and in combination with DNA-PK inhibitor AZD-7648 (HY-111783), exert efficient genome editing capabilities with dual pathway regulation. PolQi1 can be mainly used in gene editing research (such as CRISPR-Cas9 or Prime editing system optimization) to improve the precision editing efficiency of difficult-to-edit cells (such as primary hepatocytes and mouse embryos)[1][2][3].
| Cat. No. | Product Name | Purity | Description | Pricing | |||||||||||||||||||
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PolQi1 | 98.42% | PolQi1 is a selective inhibitor targeting the Polθ domain of DNA polymerase. PolQi1 inhibits the Polθ-mediated microhomology end joining (TMEJ/alt-EJ) pathway, reducing insertion/deletion (Indels) and imprecise editing events during DNA repair. PolQi1 can enhance the efficiency and accuracy of homology-directed repair (HDR) or Prime editing, and reduce off-target effects; and in combination with DNA-PK inhibitor AZD-7648 (HY-111783), exert efficient genome editing capabilities with dual pathway regulation. PolQi1 can be mainly used in gene editing research (such as CRISPR-Cas9 or Prime editing system optimization) to improve the precision editing efficiency of difficult-to-edit cells (such as primary hepatocytes and mouse embryos). | ||||||||||||||||||||
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- [1]. Wimberger S, et al. Simultaneous inhibition of DNA-PK and Polϴ improves integration efficiency and precision of genome editing. Nat Commun. 2023 Aug 14;14(1):4761. [Content Brief]
- [2]. Antoniou Panagiotis, et al. Improved nuclease-based prime editing by DNA repair modulation and pegRNA engineering. BioRxiv (2024): 2024-02.
- [3]. Mentani A, et al. Prime Editing: Mechanistic Insights and DNA Repair Modulation. Cells. 2025 Feb 13;14(4):277. [Content Brief]
Keywords