Contractile responses of airway smooth muscle ( ASM) determine airway resistance in health and disease. Caveolae microdomains in the plasma membrane are marked by caveolin proteins and are abundant in contractile smooth muscle in association with nanospaces involved in Ca2+ homeostasis. Caveolin-1 can modulate localization and activity of signaling proteins, including trimeric G proteins, via a scaffolding domain. We investigated the role of caveolae in contraction and intracellular Ca2+ ([Ca2+](i)) mobilization of ASM induced by the physiological muscarinic receptor agonist, acetylcholine ( ACh). Human and canine ASM tissues and cells predominantly express caveolin-1. Muscarinic M-3 receptors ( M3R) and G alpha(q)/11 cofractionate with cav...
Caveolae are 50-100nm large membrane invaginations that play a role in cellular signaling. The aim o...
In cardiac myocytes, as well as specialized conduction and pacemaker cells, agonist binding to musca...
Oenema TA, Smit M, Smedinga L, Racke K, Halayko AJ, Meurs H, Gosens R. Muscarinic receptor stimulati...
Contractile responses of airway smooth muscle ( ASM) determine airway resistance in health and disea...
An increased bronchoconstrictor response is a hallmark in the progression of obstructive airway dise...
Chronic airways diseases, including asthma, are associated with an increased airway smooth muscle (A...
Airway smooth muscle (ASM) cells exhibit phenotype plasticity that is under control of external stim...
Airway smooth muscle cells exhibit phenotype plasticity that underpins their ability to contribute b...
The mechanisms of controlling airway smooth muscle (ASM) tone are of utmost clinical importance as i...
Receptor-coupled contraction of smooth muscle involves recruitment to the plasma membrane of downstr...
Caveolae and lipid rafts are plasma membrane microdomains that are considered to play a role in cell...
Caveolae are flask-shaped invaginations of the plasma membrane that are present in most structural c...
In cardiac myocytes, agonist binding to muscarinic acetylcholine receptors (mAchRs) leads to the tar...
Background And Purpose Acute silencing of caveolin-1 (Cav-1) modulates receptor-mediated contraction...
Caveolae are 50-100nm large membrane invaginations that play a role in cellular signaling. The aim o...
In cardiac myocytes, as well as specialized conduction and pacemaker cells, agonist binding to musca...
Oenema TA, Smit M, Smedinga L, Racke K, Halayko AJ, Meurs H, Gosens R. Muscarinic receptor stimulati...
Contractile responses of airway smooth muscle ( ASM) determine airway resistance in health and disea...
An increased bronchoconstrictor response is a hallmark in the progression of obstructive airway dise...
Chronic airways diseases, including asthma, are associated with an increased airway smooth muscle (A...
Airway smooth muscle (ASM) cells exhibit phenotype plasticity that is under control of external stim...
Airway smooth muscle cells exhibit phenotype plasticity that underpins their ability to contribute b...
The mechanisms of controlling airway smooth muscle (ASM) tone are of utmost clinical importance as i...
Receptor-coupled contraction of smooth muscle involves recruitment to the plasma membrane of downstr...
Caveolae and lipid rafts are plasma membrane microdomains that are considered to play a role in cell...
Caveolae are flask-shaped invaginations of the plasma membrane that are present in most structural c...
In cardiac myocytes, agonist binding to muscarinic acetylcholine receptors (mAchRs) leads to the tar...
Background And Purpose Acute silencing of caveolin-1 (Cav-1) modulates receptor-mediated contraction...
Caveolae are 50-100nm large membrane invaginations that play a role in cellular signaling. The aim o...
In cardiac myocytes, as well as specialized conduction and pacemaker cells, agonist binding to musca...
Oenema TA, Smit M, Smedinga L, Racke K, Halayko AJ, Meurs H, Gosens R. Muscarinic receptor stimulati...