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Beta-adrenergic signalling in neoplastic lung type 2 cells: glucocorticoid-dependent and -independent defects
1Department of Cell Biology and Biochemistry, Texas Tech University Health Sciences Center, Lubbock 79430, USA.
Abstract:
Tumorigenic mouse lung-derived type 2 cell lines have large reductions in both beta-adrenergic-stimulated cAMP production and ligand binding to beta-adrenergic receptors. These tumorigenic cells are also relatively insensitive to glucocorticoids. Because glucocorticoids regulate both beta-adrenergic receptor expression and receptor coupling to the stimulatory guanine nucleotide binding protein Gs interactions between the glucocorticoid and beta-adrenergic signalling systems were examined. This study demonstrates that beta-adrenergic ligand binding and agonist sensitivity are increased in a tumorigenic cell line stably expressing a normal glucocorticoid receptor transgene. However, although the transfected tumour cells and non-tumorigenic cells have similar amounts and affinities of beta-adrenergic agonist and antagonist binding, similar amounts of Gs subunits and similar forskolin-stimulated adenylyl cyclase activities, the former remain much less isoproterenol responsive. Competition binding studies demonstrate that tumour cell beta-adrenergic receptors have both high- and low-affinity agonist binding but are functionally uncoupled from Gs. This uncoupling may involve an alteration in Gs, as guanine nucleotides exhibit a reduced ability to stimulate adenylyl cyclase. Thus, some aspects of tumorigenic cell dysfunction in beta-adrenergic signalling can be ameliorated by interactions with the glucocorticoid pathway, but additional defects are also involved.
Insights
Tumorigenic lung cells show impaired beta-adrenergic signaling. Glucocorticoid receptor expression partially restores signaling, but uncoupling from Gs proteins indicates additional defects in these cancer cells.
Area of Science:
- Cellular and Molecular Biology
- Cancer Research
- Endocrinology
Background:
- Tumorigenic mouse lung type 2 cells exhibit reduced beta-adrenergic-stimulated cAMP production and ligand binding.
- These cells display insensitivity to glucocorticoids, which normally regulate beta-adrenergic receptor expression and signaling.
Purpose of the Study:
- To investigate the interactions between glucocorticoid and beta-adrenergic signaling pathways in tumorigenic lung cells.
- To determine if glucocorticoid receptor expression can restore beta-adrenergic signaling defects in cancer cells.
Main Methods:
- Stable transfection of a normal glucocorticoid receptor transgene into a tumorigenic cell line.
- Analysis of beta-adrenergic receptor ligand binding and agonist sensitivity.
- Assessment of Gs protein levels and adenylyl cyclase activity.
Main Results:
- Transfected tumorigenic cells showed increased beta-adrenergic ligand binding and agonist sensitivity.
- Despite restored receptor binding and similar Gs/adenylyl cyclase activity, transfected cells remained less responsive to isoproterenol.
- Tumor cell beta-adrenergic receptors were functionally uncoupled from Gs, possibly due to Gs alterations.
Conclusions:
- Glucocorticoid pathway interactions can partially ameliorate beta-adrenergic signaling dysfunction in tumorigenic cells.
- Additional defects beyond Gs uncoupling contribute to the overall signaling impairment in these cancer cells.