Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Agonist‐induced desensitisation of β3‐adrenoceptors: Where, when, and how?

View through CrossRef
β3‐Adrenoceptor agonists have proven useful in the treatment of overactive bladder syndrome, but it is not known whether their efficacy during chronic administration may be limited by receptor‐induced desensitisation. Whereas the β2‐adrenoceptor has phosphorylation sites that are important for desensitisation, the β3‐adrenoceptor lacks these; therefore, it had been assumed that β3‐adrenoceptors are largely resistant to agonist‐induced desensitisation. While all direct comparative studies demonstrate that β3‐adrenoceptors are less susceptible to desensitisation than β2‐adrenoceptors, desensitisation of β3‐adrenoceptors has been observed in many models and treatment settings. Chimeric β2‐ and β3‐adrenoceptors have demonstrated that the C‐terminal tail of the receptor plays an important role in the relative resistance to desensitisation but is not the only relevant factor. While the evidence from some models, such as transfected CHO cells, is inconsistent, it appears that desensitisation is observed more often after long‐term (hours to days) than short‐term (minutes to hours) agonist exposure. When it occurs, desensitisation of β3‐adrenoceptors can involve multiple levels including down‐regulation of its mRNA and the receptor protein and alterations in post‐receptor signalling events. The relative contributions of these mechanistic factors apparently depend on the cell type under investigation. Which if any of these factors is applicable to the human urinary bladder remains to be determined.Linked ArticlesThis article is part of a themed section on Adrenoceptors—New Roles for Old Players. To view the other articles in this section visit http://onlinelibrary.wiley.com/doi/10.1111/bph.v176.14/issuetoc
Title: Agonist‐induced desensitisation of β3‐adrenoceptors: Where, when, and how?
Description:
β3‐Adrenoceptor agonists have proven useful in the treatment of overactive bladder syndrome, but it is not known whether their efficacy during chronic administration may be limited by receptor‐induced desensitisation.
Whereas the β2‐adrenoceptor has phosphorylation sites that are important for desensitisation, the β3‐adrenoceptor lacks these; therefore, it had been assumed that β3‐adrenoceptors are largely resistant to agonist‐induced desensitisation.
While all direct comparative studies demonstrate that β3‐adrenoceptors are less susceptible to desensitisation than β2‐adrenoceptors, desensitisation of β3‐adrenoceptors has been observed in many models and treatment settings.
Chimeric β2‐ and β3‐adrenoceptors have demonstrated that the C‐terminal tail of the receptor plays an important role in the relative resistance to desensitisation but is not the only relevant factor.
While the evidence from some models, such as transfected CHO cells, is inconsistent, it appears that desensitisation is observed more often after long‐term (hours to days) than short‐term (minutes to hours) agonist exposure.
When it occurs, desensitisation of β3‐adrenoceptors can involve multiple levels including down‐regulation of its mRNA and the receptor protein and alterations in post‐receptor signalling events.
The relative contributions of these mechanistic factors apparently depend on the cell type under investigation.
Which if any of these factors is applicable to the human urinary bladder remains to be determined.
Linked ArticlesThis article is part of a themed section on Adrenoceptors—New Roles for Old Players.
To view the other articles in this section visit http://onlinelibrary.
wiley.
com/doi/10.
1111/bph.
v176.
14/issuetoc.

Related Results

PROCEEDINGS OF THE AUSTRALASIAN SOCIETY OF CLINICAL AND EXPERIMENTAL PHARMACOLOGISTS
PROCEEDINGS OF THE AUSTRALASIAN SOCIETY OF CLINICAL AND EXPERIMENTAL PHARMACOLOGISTS
14th Annual Meeting, December 1980, Canberra1. Effect of dexamethasone on pineal β‐adrenoceptors. C. A. Maxwell, A. Foldes, N. T. Hinks and R. M. Hoskinson2. A clinicopathological ...
PROCEEDINGS OF THE AUSTRALASIAN SOCIETY OF CLINICAL AND EXPERIMENTAL PHARMACOLOGISTS
PROCEEDINGS OF THE AUSTRALASIAN SOCIETY OF CLINICAL AND EXPERIMENTAL PHARMACOLOGISTS
1.Effect of chronic haloperidol treatment on D‐2 receptors labelled by (3H)‐spiperone in homogenates of rat corpus striatum. A. L. Gundlach, D. J. de Vries and P. M. Beart2.The eff...
Regional quantification of muscarinic acetylcholine receptors and β‐adrenoceptors in human airways
Regional quantification of muscarinic acetylcholine receptors and β‐adrenoceptors in human airways
BACKGROUND AND PURPOSE Muscarinic acetylcholine receptors (mAChRs) and β‐adrenoceptors in the airways and lungs are clinically important in chronic obstructive pulmonary disease (C...
Species-Specific Pharmacological Properties of Human α2A-Adrenoceptors
Species-Specific Pharmacological Properties of Human α2A-Adrenoceptors
Abstract—On the basis of data obtained in rabbits, the imidazoline receptor ligand rilmenidine has been suggested to decrease blood pressure in humans by activating central α2A-adr...
Abstract 2094: Conjugates of TLR9 and STING agonists achieved profound synergistic effects in vitro and in vivo
Abstract 2094: Conjugates of TLR9 and STING agonists achieved profound synergistic effects in vitro and in vivo
Abstract Introduction: Both Toll-like receptor 9 (TLR9) and STING pathways are two important pathways involved in immune activation. We reasoned that concurrent acti...
Isoflurane and Nociception
Isoflurane and Nociception
Background The authors recently established that the analgesic actions of the inhalation anesthetic nitrous oxide were mediated by noradrenergic bulbospinal neurons and...
A Concise and Useful Guide to Understand How Alpha1 Adrenoceptor Antagonists Work
A Concise and Useful Guide to Understand How Alpha1 Adrenoceptor Antagonists Work
Abstract: Adrenoceptors are the receptors for catecholamines, adrenaline, and noradrenaline. They are divided in α (α1 and α2) and β (β1, β2 and β3). α1-adrenoceptors are subdivide...
Feasibility of gamified visual desensitisation for visually-induced dizziness
Feasibility of gamified visual desensitisation for visually-induced dizziness
AbstractVisually-induced dizziness (visual vertigo) is a core symptom of Persistent Perceptual Postural Dizziness (PPPD) and occurs in other conditions and general populations. It ...

Back to Top