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Homologous regulation of brain oxytocin receptors
T R Insel1, J T Winslow, D M Witt
1Laboratory of Neurophysiology, National Institute of Mental Health, Poolesville, Maryland 20837.
Abstract:
Specific receptors for oxytocin have been identified in rat forebrain. Previous studies have demonstrated that in select regions, these receptors are dependent on heterologous induction by gonadal steroids. To investigate whether brain oxytocin receptors are homologously regulated by oxytocin, we measured oxytocin receptor binding after hypothalamic paraventricular nucleus lesions, repeated central injections of oxytocin, and continuous central infusion of oxytocin via osmotic minipump. Neither lesions of the paraventricular nucleus nor repeated oxytocin injections altered the binding of the selective oxytocin receptor ligand [125I]OTA [125I] d(CH2)5[Tyr(Me)2,Thr4,Tyr-NH2(9)] ornithine vasotocin, as measured by in vitro receptor autoradiography. After 10 days of continuous oxytocin infusion by osmotic minipump, oxytocin receptor binding decreased in every target field by at least 50%. This decrease appeared to represent a down-regulation of receptors and not displacement by exogenous peptide, as it persisted for at least 24 h after pump removal, and binding remained reduced in the presence of a saturating concentration of [125I] OTA. Reduction of oxytocin receptors in response to increased oxytocin release may represent an important physiological mechanism for the regulation of central oxytocin neurotransmission.
Insights
Brain oxytocin receptors are not regulated by lesions or injections but are downregulated by continuous oxytocin infusion. This suggests a homologous regulation mechanism for central oxytocin neurotransmission.
Area of Science:
- Neuroscience
- Endocrinology
- Molecular Biology
Background:
- Specific oxytocin receptors are found in the rat forebrain.
- Some brain oxytocin receptors are regulated by gonadal steroids.
Purpose of the Study:
- To investigate if oxytocin receptors in the brain are regulated by oxytocin itself (homologous regulation).
Main Methods:
- Lesioning the hypothalamic paraventricular nucleus.
- Repeated central injections of oxytocin.
- Continuous central infusion of oxytocin via osmotic minipump.
- Measuring oxytocin receptor binding using [125I]OTA via in vitro receptor autoradiography.
Main Results:
- Neither paraventricular nucleus lesions nor repeated oxytocin injections altered oxytocin receptor binding.
- Continuous oxytocin infusion for 10 days decreased oxytocin receptor binding by at least 50% in all target fields.
- The observed decrease was a downregulation of receptors, not displacement, as it persisted after pump removal and in the presence of saturating [125I]OTA concentrations.
Conclusions:
- Oxytocin receptor levels in the brain are downregulated by sustained exposure to oxytocin.
- This downregulation represents a physiological mechanism for regulating central oxytocin neurotransmission.