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AZD-7648, a DNA-PK Inhibitor, Induces DNA Damage, Apoptosis, and Cell Cycle Arrest in Chronic and Acute Myeloid
Beatriz Santos Lapa1,2,3, Maria Inês Costa1,2,3, Diana Figueiredo1
1Laboratory of Oncobiology and Hematology (LOH), University Clinics of Hematology and Oncology, Faculty of Medicine (FMUC), University of Coimbra, 3000-548 Coimbra, Portugal.
Abstract:
The non-homologous end joining pathway is vital for repairing DNA double-strand breaks (DSB), with DNA-dependent protein kinase (DNA-PK) playing a critical role. Altered DNA damage response (DDR) in chronic (CML) and acute myeloid leukemia (AML) offers potential therapeutic opportunities. We studied the therapeutic potential of AZD-7648 (DNA-PK inhibitor) in CML and AML cell lines. This study used two CML (K-562 and LAMA-84) and five AML (HEL, HL-60, KG-1, NB-4, and THP-1) cell lines. DDR gene mutations were obtained from the COSMIC database. The copy number and methylation profile were evaluated using MS-MLPA and DDR genes, and telomere length using qPCR. p53 protein expression was assessed using Western Blot, chromosomal damage through cytokinesis-block micronucleus assay, and γH2AX levels and DSB repair kinetics using flow cytometry. Cell density and viability were analyzed using trypan blue assay after treatment with AZD-7648 in concentrations ranging from 10 to 200 µM. Cell death, cell cycle distribution, and cell proliferation rate were assessed using flow cytometry. The cells displayed different DNA baseline damage, DDR gene expressions, mutations, genetic/epigenetic changes, and p53 expression. Only HEL cells displayed inefficient DSB repair. The LAMA-84, HEL, and KG-1 cells were the most sensitive to AZD-7648, whereas HL-60 and K-562 showed a lower effect on density and viability. Besides the reduction in cell proliferation, AZD-7648 induced apoptosis, cell cycle arrest, and DNA damage. In conclusion, these results suggest that AZD-7648 holds promise as a potential therapy for myeloid leukemias, however, with variations in drug sensitivity among tested cell lines, thus supporting further investigation to identify the specific factors influencing sensitivity to this DNA-PK inhibitor.
Insights
The DNA-PK inhibitor AZD-7648 shows therapeutic promise for myeloid leukemias by inducing apoptosis and cell cycle arrest. Drug sensitivity varied across cell lines, necessitating further research into factors influencing efficacy in chronic and acute myeloid leukemia.
Area of Science:
- Molecular Biology
- Cancer Research
- Genetics
Background:
- Non-homologous end joining (NHEJ) pathway is crucial for DNA double-strand break (DSB) repair.
- DNA-dependent protein kinase (DNA-PK) is a key enzyme in the NHEJ pathway.
- Altered DNA damage response (DDR) in chronic myeloid leukemia (CML) and acute myeloid leukemia (AML) presents therapeutic targets.
Purpose of the Study:
- To investigate the therapeutic potential of AZD-7648, a DNA-PK inhibitor, in CML and AML cell lines.
- To assess the impact of AZD-7648 on cell viability, proliferation, apoptosis, cell cycle, and DNA damage.
- To explore variations in drug sensitivity among different leukemia cell lines.
Main Methods:
- Utilized two CML and five AML cell lines.
- Analyzed DDR gene mutations (COSMIC database), copy number, methylation, and telomere length (MS-MLPA, qPCR).
- Assessed p53 expression (Western Blot), chromosomal damage (micronucleus assay), DSB repair kinetics, cell viability (trypan blue), and cell cycle/proliferation (flow cytometry) following AZD-7648 treatment.
Main Results:
- Cell lines exhibited diverse baseline DNA damage, DDR gene profiles, and p53 expression.
- LAMA-84, HEL, and KG-1 cells showed higher sensitivity to AZD-7648 compared to HL-60 and K-562 cells.
- AZD-7648 reduced proliferation, induced apoptosis, cell cycle arrest, and DNA damage in sensitive cell lines.
Conclusions:
- AZD-7648 demonstrates potential as a therapeutic agent for myeloid leukemias.
- Significant variations in sensitivity to AZD-7648 were observed across tested cell lines.
- Further research is warranted to identify factors influencing sensitivity and optimize treatment strategies.
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