L67
Selleck Chemicals
SKU:E7688
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L67 is an inhibitor of DNA/RNA Synthesis used in studies of DNA Damage Response and Oxidative Stress Response. In practice, this places the compound in experiments that measure checkpoint activation, DNA repair, and genome-stability control and redox signaling, ROS handling, and antioxidant defenses in cancer, dna damage / repair, and metabolism models.
By inhibiting DNA/RNA Synthesis, L67 can be used to examine checkpoint activation, DNA repair, and genome-stability control and redox signaling, ROS handling, and antioxidant defenses. The enzyme annotation adds relevance to enzyme-activity assays, substrate-conversion studies, and mechanism profiling, together with downstream-response mapping in the same experimental setting. In cancer, dna damage / repair, and metabolism models, these readouts can be combined with viability, reporter, localization, biochemical conversion, or morphology endpoints to refine experimental interpretation.
Research Applications
- Target-focused assays involving DNA/RNA Synthesis
- Pathway perturbation studies connected to DNA Damage Response and Oxidative Stress Response
- Concentration-response inhibition and target-dependence studies
- Enzyme-activity assays, substrate-conversion studies, and mechanism profiling
Overall, L67 is appropriate when a defined chemical perturbant is needed to connect DNA/RNA Synthesis with measurable biochemical, transcriptional, electrophysiological, imaging, or phenotypic readouts in cancer, dna damage / repair, and metabolism models. This profile is suited to mechanistic follow-up, comparative profiling, and assay optimization under defined exposure conditions.
- Targets:
- DNA/RNA Synthesis
- Target Class:
- Enzyme
- Pathways:
- DNA Damage Response • Oxidative Stress Response
- Research Area:
- Cancer • DNA Damage / Repair • Metabolism • Oxidative Stress
- CAS No.:
- 325970-71-6
- Molecular Weight:
- 486.11
- Formula:
- C₁₆H₁₄Br₂N₄O₄
- Storage Temperature:
- -20°C
For Research Use Only. Not intended for diagnostic or therapeutic use.
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