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Receptor isoforms mediate opposing proliferative effects through gbetagamma-activated p38 or Akt pathways
L A Sellers1, F Alderton, A M Carruthers
1Glaxo Institute of Applied Pharmacology, Department of Pharmacology, University of Cambridge, Cambridge CB2 1QJ, United Kingdom.
Abstract:
The opposing effects on proliferation mediated by G-protein-coupled receptor isoforms differing in their COOH termini could be correlated with the abilities of the receptors to differentially activate p38, implicated in apoptotic events, or phosphatidylinositol 3-kinase (PI 3-K), which provides a source of survival signals. These contrasting growth responses of the somatostatin sst(2) receptor isoforms, which couple to identical Galpha subunit pools (Galpha(i3) > Galpha(i2) >> Galpha(0)), were both inhibited following betagamma sequestration. The sst(2(a)) receptor-mediated ATF-2 activation and inhibition of proliferation induced by basic fibroblast growth factor (bFGF) were dependent on prolonged phosphorylation of p38. In contrast, cell proliferation and the associated transient phosphorylation of Akt and p70(rsk) induced by sst(2(b)) receptors were blocked by the PI 3-K inhibitor LY 294002. Stimulation with bFGF alone had no effect on the activity of either p38 or Akt but markedly enhanced p38 phosphorylation mediated by sst(2(a)) receptors, suggesting that a complex interplay exists between the transduction cascades activated by these distinct receptor types. In addition, although all receptors mediated a sustained activation of extracellular signal-regulated kinases (ERK1 and ERK2), induction of the tumor suppressor p21(cip1) was detected only following amplification of ERK and p38 phosphorylation by concomitant bFGF and sst(2(a)) receptor activation. Expression of constitutively active Akt in the presence of a p38 inhibitor enabled a proliferative response to be detected in sst(2(a)) receptor-expressing cells. These findings demonstrate that the duration of activation and a critical balance between the mitogen-activated protein kinase and PI 3-K pathways are important for controlling cell proliferation and that the COOH termini of the sst(2) receptor isoforms may determine the selection of appropriate betagamma-pairings necessary for interaction with distinct kinase cascades.
Insights
G-protein-coupled receptor isoforms control cell proliferation by differentially activating p38 or phosphatidylinositol 3-kinase (PI 3-K) pathways. The duration of signaling and pathway balance are crucial for cell growth regulation.
Area of Science:
- Cell biology
- Molecular signaling
- Receptor pharmacology
Background:
- G-protein-coupled receptors (GPCRs) play crucial roles in cellular signaling.
- Isoforms of GPCRs can exhibit distinct signaling properties.
- Somatostatin receptors (sst) are involved in various physiological processes.
Purpose of the Study:
- To investigate the opposing effects on cell proliferation mediated by different G-protein-coupled receptor isoforms.
- To elucidate the roles of p38 and phosphatidylinositol 3-kinase (PI 3-K) pathways in mediating these effects.
- To understand how receptor COOH termini influence downstream signaling and cell growth.
Main Methods:
- Utilized somatostatin sst(2) receptor isoforms (sst(2(a)) and sst(2(b))) with distinct COOH termini.
- Investigated the activation of p38 and PI 3-K pathways.
- Assessed the phosphorylation of downstream targets like Akt and p70(rsk).
- Employed basic fibroblast growth factor (bFGF) and PI 3-K inhibitor LY 294002.
Main Results:
- sst(2(a)) receptor activation led to prolonged p38 phosphorylation and inhibited proliferation.
- sst(2(b)) receptor activation induced transient Akt/p70(rsk) phosphorylation and promoted proliferation, blocked by LY 294002.
- bFGF enhanced sst(2(a))-mediated p38 phosphorylation, indicating pathway crosstalk.
- Tumor suppressor p21(cip1) induction required combined ERK/p38 activation via sst(2(a)) and bFGF.
Conclusions:
- The duration of signaling pathway activation is critical for controlling cell proliferation.
- A balance between mitogen-activated protein kinase (MAPK) and PI 3-K pathways is essential for cell growth.
- Receptor COOH termini dictate specific G-protein subunit pairings, influencing kinase cascade selection.