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Published on: August 21, 2013
PJ-34 inhibits PARP-1 expression and ERK phosphorylation in glioma-conditioned brain microvascular endothelial cells
Carla Motta1, Floriana D'Angeli1, Marina Scalia1
1Department of Biomedical Sciences and Biotecnology, University of Catania, Via Santa Sofia 64, 95125 Catania, Italy.
Abstract:
Inhibitors of PARP-1(Poly(ADP-ribose) polymerase-1) act by competing with NAD(+), the enzyme physiological substrate, which play a protective role in many pathological conditions characterized by PARP-1 overactivation. It has been shown that PARP-1 also promotes tumor growth and progression through its DNA repair activity. Since angiogenesis is an essential requirement for these activities, we sought to determine whether PARP inhibition might affect rat brain microvascular endothelial cells (GP8.3) migration, stimulated by C6-glioma conditioned medium (CM). Through wound-healing experiments and MTT analysis, we demonstrated that PARP-1 inhibitor PJ-34 [N-(6-Oxo-5,6-dihydrophenanthridin-2-yl)-N,N-dimethylacetamide] abolishes the migratory response of GP8.3 cells and reduces their viability. PARP-1 also acts in a DNA independent way within the Extracellular-Regulated-Kinase (ERK) signaling cascade, which regulates cell proliferation and differentiation. By western analysis and confocal laser scanning microscopy (LSM), we analyzed the effects of PJ-34 on PARP-1 expression, phospho-ERK and phospho-Elk-1 activation. The effect of MEK (mitogen-activated-protein-kinase-kinase) inhibitor PD98059 (2-(2-Amino-3-methoxyphenyl)-4 H-1-benzopyran-4-one) on PARP-1 expression in unstimulated and in CM-stimulated GP8.3 cells was analyzed by RT-PCR. PARP-1 expression and phospho-ERK activation were significantly reduced by treatment of GP8.3 cells with PJ-34 or PD98059. By LSM, we further demonstrated that PARP-1 and phospho-ERK are coexpressed and share the same subcellular localization in GP8.3 cells, in the cytoplasm as well as in nucleoplasm. Based on these data, we propose that PARP-1 and phospho-ERK interact in the cytosol and then translocate to the nucleus, where they trigger a proliferative response. We also propose that PARP-1 inhibition blocks CM-induced endothelial migration by interfering with ERK signal-transduction pathway.
Insights
Poly(ADP-ribose) polymerase-1 (PARP-1) inhibition blocks tumor cell migration by disrupting the ERK signaling pathway. This study shows PARP-1 and phospho-ERK interact and translocate to the nucleus, promoting proliferation.
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- Poly(ADP-ribose) polymerase-1 (PARP-1) is involved in DNA repair and tumor progression.
- Angiogenesis is crucial for tumor growth, making it a target for anti-cancer therapies.
- PARP-1 activation is implicated in pathological conditions and tumor growth.
Purpose of the Study:
- To investigate the effect of PARP-1 inhibition on the migration of rat brain microvascular endothelial cells (GP8.3) stimulated by C6-glioma conditioned medium (CM).
- To elucidate the role of PARP-1 in the Extracellular-Regulated-Kinase (ERK) signaling pathway in endothelial cell migration.
- To determine if PARP-1 and ERK signaling pathways interact and influence cell proliferation.
Main Methods:
- Wound-healing assays and MTT analysis to assess cell migration and viability.
- Western analysis and confocal laser scanning microscopy (LSM) to evaluate protein expression and localization.
- RT-PCR to analyze gene expression changes in response to inhibitors.
Main Results:
- PARP-1 inhibitor PJ-34 significantly reduced GP8.3 cell migration and viability.
- Both PJ-34 and MEK inhibitor PD98059 decreased PARP-1 expression and phospho-ERK activation.
- PARP-1 and phospho-ERK were found to be coexpressed and colocalized in the cytoplasm and nucleoplasm of GP8.3 cells.
Conclusions:
- PARP-1 inhibition blocks C6-glioma conditioned medium-induced endothelial cell migration.
- PARP-1 and phospho-ERK signaling pathway interaction is crucial for endothelial cell proliferation and migration.
- PARP-1 may act in concert with ERK signaling to promote tumor angiogenesis and growth.
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