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Published on: November 25, 2013
Expression of minichromosome maintenance proteins in vascular smooth muscle cells is ERK/MAPK dependent
Dennis Bruemmer1, Fen Yin, Joey Liu
1Division of Endocrinology, Diabetes, and Hypertension, David Geffen School of Medicine, University of California, Los Angeles, CA 90095, USA.
Abstract:
Proliferation of vascular smooth muscle cells (VSMC) represents a key event for the pathogenesis of postangioplasty restenosis. Minichromosome maintenance proteins (MCM) form essential components of the prereplicative complex at DNA replication origins and are regulated by E2F. The present studies were designed to investigate the signal transduction pathways controlling the expression of MCM6 and MCM7 in VSMC in response to mitogenic stimuli. MCM6 and MCM7 expression was substantially increased after stimulation with platelet-derived growth factor-BB and insulin. Pretreatment with PD98059, a specific inhibitor of the extracellular signal-regulated kinases (ERK)-mitogen-activated protein kinase (MAPK), competely inhibited the mitogen-induced MCM6 and MCM7 mRNA and protein expression, demonstrating a critical role for this pathway in transmitting transmembrane signals required for the initiation of DNA replication. The p38MAPK inhibitor SB203580, the phosphatidylinositol 3 kinase (PI3-kinase) pathway inhibitor wortmannin, and the protein kinase C pathway (PKC) inhibitor Gö 6976 did not significantly affect mitogen-induced MCM6 and MCM7 expression. Transient transfection experiments revealed that PD98059 inhibited mitogen-induced MCM6 and MCM7 transcriptional activation. In addition, blockade of ERK/MAPK signaling with PD98059 strongly inhibited phosphorylation of the retinoblastoma protein (Rb) and activity of a luciferase reporter plasmid driven by multiple E2F elements. Inhibition of mitogen-induced MCM6 and MCM7 expression by PD98059 was reversed by ectopic overexpression of E2F, indicating that ERK/MAPK signaling is required for events that occur upstream of E2F release from phosphorylated Rb. In combination, these data demonstrate that the ERK/MAPK signal transduction pathway plays a central role in regulating E2F-dependent MCM expression and DNA replication in VSMC.
Insights
Vascular smooth muscle cell proliferation, crucial in restenosis, is regulated by ERK/MAPK signaling. This pathway controls Minichromosome maintenance (MCM) gene expression and DNA replication initiation by influencing E2F activity.
Area of Science:
- Cell Biology
- Molecular Biology
- Cardiovascular Research
Background:
- Vascular smooth muscle cell (VSMC) proliferation is central to postangioplasty restenosis.
- Minichromosome maintenance (MCM) proteins are vital for DNA replication initiation and are regulated by E2F transcription factors.
Purpose of the Study:
- To investigate signal transduction pathways regulating MCM6 and MCM7 expression in VSMC.
- To determine the role of ERK/MAPK signaling in mitogen-induced MCM expression and VSMC proliferation.
Main Methods:
- VSMC were stimulated with mitogens (platelet-derived growth factor-BB, insulin).
- Inhibitors of specific signaling pathways (ERK/MAPK, p38MAPK, PI3-kinase, PKC) were used.
- mRNA and protein expression of MCM6 and MCM7 were analyzed.
- Transcriptional activation, retinoblastoma protein (Rb) phosphorylation, and E2F activity were assessed.
Main Results:
- Mitogenic stimulation significantly increased MCM6 and MCM7 expression.
- PD98059 (ERK/MAPK inhibitor) completely blocked mitogen-induced MCM6 and MCM7 expression.
- Other pathway inhibitors (SB203580, wortmannin, Gö 6976) had no significant effect.
- PD98059 inhibited MCM transcription, Rb phosphorylation, and E2F activity.
- Ectopic E2F overexpression reversed PD98059's inhibitory effect on MCM expression.
Conclusions:
- The ERK/MAPK pathway is critical for regulating MCM6 and MCM7 expression in VSMC.
- ERK/MAPK signaling acts upstream of E2F release from Rb to control MCM expression and DNA replication.
- This pathway is a key regulator of VSMC proliferation in response to mitogenic stimuli.
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