Interference with 3',5'-cyclic adenosine monophosphate response element binding protein stimulates apoptosis through
Jessica H Dworet1, Judy L Meinkoth
1Department of Pharmacology, University of Pennsylvania School of Medicine, 420 Curie Boulevard, Philadelphia, Pennsylvania 19104-6061, USA.
Abstract:
We previously reported that protein kinase A activity is an important determinant of thyroid cell survival. Given the important role of cAMP response element binding protein (CREB) in mediating the transcriptional effects of protein kinase A, we explored whether interference with CREB family members impaired thyroid cell survival. Expression of A-CREB, a dominant-negative CREB mutant that inhibits CREB DNA binding activity, induced apoptosis in rat thyroid cells. A-CREB inhibited CRE-regulated gene expression but failed to alter the expression of bcl-2 family members or of well-characterized inhibitors of apoptosis. To elucidate the mechanism through which impaired CREB function triggered apoptosis, its effects on cell proliferation were examined. Expression of A-CREB inhibited cell number increases, in part due to delayed cell cycle transit. Protracted S-phase progression in A-CREB-expressing cells was sufficient to activate a checkpoint response characterized by Chk-1, histone H2A.X, and p53 phosphorylation. To determine whether cell cycle progression was required for apoptosis, the effects of p27 overexpression were investigated. Overexpression of p27 prevented cell cycle progression, checkpoint activation, and apoptosis in A-CREB-expressing cells. These data reveal a novel mechanism through which interference with CREB abrogates cell survival, through checkpoint activation secondary to cell cycle delay. This study may explain how interference with CREB induces apoptosis in cells where alterations in the expression of pro- and anti-survival genes are not detected.
Insights
Impairing cAMP response element binding protein (CREB) function triggers thyroid cell death by delaying cell cycle progression and activating checkpoints. This novel mechanism explains apoptosis independent of survival gene alterations.
Area of Science:
- Molecular Biology
- Cell Biology
- Endocrinology
Background:
- Protein kinase A activity is crucial for thyroid cell survival.
- cAMP response element binding protein (CREB) mediates protein kinase A's transcriptional effects.
Purpose of the Study:
- To investigate if interfering with CREB impairs thyroid cell survival.
- To elucidate the mechanism by which CREB dysfunction induces apoptosis.
Main Methods:
- Expression of a dominant-negative CREB mutant (A-CREB) in rat thyroid cells.
- Analysis of CRE-regulated gene expression, apoptosis, cell proliferation, and cell cycle progression.
- Investigation of checkpoint activation (Chk-1, H2A.X, p53) and the role of p27.
Main Results:
- A-CREB expression induced apoptosis in rat thyroid cells.
- A-CREB inhibited CRE-regulated gene expression but did not alter bcl-2 family members or apoptosis inhibitors.
- A-CREB expression delayed cell cycle transit, leading to checkpoint activation and apoptosis, which was prevented by p27 overexpression.
Conclusions:
- Interference with CREB function abrogates thyroid cell survival via checkpoint activation secondary to cell cycle delay.
- This pathway explains CREB interference-induced apoptosis even without changes in pro- and anti-survival gene expression.
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