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Changes in adenylyl cyclase isoforms as a mechanism for thyroid hormone modulation of cardiac beta-adrenergic
1Department of Medicine, North Shore University Hospital/New York University School of Medicine, Manhasset 11030, USA.
Abstract:
Although thyroid hormones are known to modulate cardiac beta-adrenergic receptor expression, the physiologic implications of these changes in the cardiac manifestations of altered thyroid hormone metabolism have been disputed. This study examined whether thyroid hormone modulates signaling via the cyclic adenosine monophosphate (cAMP) pathway by regulating cardiac adenylyl cyclase (AC) isoform expression. Northern blot analyses and AC enzyme assays were performed on preparations from hypothyroid, euthyroid, and hyperthyroid rat ventricles. Steady-state levels of cardiac AC mRNA types V and VI in hypothyroid ventricles were 173% +/- 8% and 149% +/- 12%, respectively, of the values in euthyroid ventricles (P < .01). This increase in AC mRNA isoforms was accompanied by a 1.5-fold increase (P < .05) in the activation of catalytic AC by forskolin and Mn. In contrast, the relative abundance of transcripts for types V and VI AC was similar in hyperthyroid and euthyroid ventricles, but catalytic AC activation by forskolin and Mn was significantly reduced by 35% in membranes obtained from hyperthyroid ventricles. AC activation through beta-adrenergic receptor stimulation by isoproterenol was not altered by thyroid hormone status. Thus, the effect of thyroid hormone to repress AC catalytic activity would be anticipated to offset the increase in beta-adrenergic receptor expression in hyperthyroidism. These studies identify cardiac AC enzymes as important targets for thyroid hormone-dependent regulation of signaling via the cAMP pathway, and support the finding that cardiac adrenergic responsiveness is unaltered in thyroid disease states.
Insights
Thyroid hormones regulate cardiac adenylyl cyclase (AC) enzymes, impacting cyclic adenosine monophosphate (cAMP) signaling. This study reveals AC enzymes are key targets for thyroid hormone action in the heart.
Area of Science:
- Cardiovascular Physiology
- Endocrinology
- Molecular Biology
Background:
- Thyroid hormones influence cardiac beta-adrenergic receptor expression, but their precise role in cardiac function is debated.
- The mechanism by which thyroid hormone affects cardiac signaling pathways remains unclear.
Purpose of the Study:
- To investigate if thyroid hormone modulates cardiac signaling via the cyclic adenosine monophosphate (cAMP) pathway.
- To determine if thyroid hormone regulates cardiac adenylyl cyclase (AC) isoform expression and activity.
Main Methods:
- Northern blot analysis of cardiac AC mRNA types V and VI in rat ventricles.
- AC enzyme activity assays using preparations from hypothyroid, euthyroid, and hyperthyroid rats.
- Assessment of AC activation by forskolin, Mn, and isoproterenol.
Main Results:
- Hypothyroidism increased cardiac AC V and VI mRNA levels and forskolin-stimulated AC activity.
- Hyperthyroidism showed similar AC V and VI mRNA levels but reduced catalytic AC activity.
- Beta-adrenergic receptor-stimulated AC activation was not affected by thyroid hormone status.
Conclusions:
- Cardiac AC enzymes are significant targets for thyroid hormone-dependent regulation of cAMP signaling.
- Thyroid hormone's effect on AC activity may counterbalance changes in beta-adrenergic receptor expression in hyperthyroidism.
- Cardiac adrenergic responsiveness is maintained despite altered thyroid hormone levels.