Caveolins in vascular smooth muscle: form organizing function.

PubWeight™: 0.96‹?› | Rank: Top 15%

🔗 View Article (PMC 1446070)

Published in Cardiovasc Res on January 04, 2006

Authors

Christopher D Hardin1, Johana Vallejo

Author Affiliations

1: Department of Medical Pharmacology and Physiology, University of Missouri, Columbia, MO 65212, USA. HardinC@missouri.edu

Articles citing this

Caveolae in smooth muscles: nanocontacts. J Cell Mol Med (2006) 1.20

Sphingosine-1-phosphate and modulation of vascular tone. Cardiovasc Res (2009) 1.19

The sodium pump and cardiotonic steroids-induced signal transduction protein kinases and calcium-signaling microdomain in regulation of transporter trafficking. Biochim Biophys Acta (2010) 1.17

Caveolin-1 regulation of store-operated Ca(2+) influx in human airway smooth muscle. Eur Respir J (2012) 1.05

Caveolin-1 and force regulation in porcine airway smooth muscle. Am J Physiol Lung Cell Mol Physiol (2011) 0.99

Caveolae: a regulatory platform for nutritional modulation of inflammatory diseases. J Nutr Biochem (2011) 0.89

Caveolin-1 knockout mice exhibit airway hyperreactivity. Am J Physiol Lung Cell Mol Physiol (2012) 0.89

Reciprocal regulation of the platelet-derived growth factor receptor-beta and G protein-coupled receptor kinase 5 by cross-phosphorylation: effects on catalysis. Mol Pharmacol (2008) 0.86

Synergistic effects of matrix nanotopography and stiffness on vascular smooth muscle cell function. Tissue Eng Part A (2014) 0.84

Caveolin and caveolae in age associated cardiovascular disease. J Geriatr Cardiol (2013) 0.82

Role of T-type channels in vasomotor function: team player or chameleon? Pflugers Arch (2014) 0.81

Associated inflammation or increased flow-mediated shear stress, but not pressure alone, disrupts endothelial caveolin-1 in infants with pulmonary hypertension. Pulm Circ (2012) 0.81

Caveolae-dependent internalization and homologous desensitization of VIP/PACAP receptor, VPAC₂, in gastrointestinal smooth muscle. Peptides (2013) 0.78

The effect of caveolin-1 (Cav-1) on fatty acid uptake and CD36 localization and lipotoxicity in vascular smooth muscle (VSM) cells. Int J Physiol Pathophysiol Pharmacol (2008) 0.76

Caveolae regulate vasoconstriction of conduit arteries to angiotensin II in hindlimb unweighted rats. J Physiol (2015) 0.75

The Xanthine Derivative KMUP-1 Attenuates Serotonin-Induced Vasoconstriction and K⁺-Channel Inhibitory Activity via the PKC Pathway in Pulmonary Arteries. Int J Biol Sci (2015) 0.75

Curcumin enhances vascular contractility via induction of myocardin in mouse smooth muscle cells. Acta Pharmacol Sin (2017) 0.75

Biomechanical Strain Exacerbates Inflammation on a Progeria-on-a-Chip Model. Small (2017) 0.75

Articles cited by this

Ca2+ sensitivity of smooth muscle and nonmuscle myosin II: modulated by G proteins, kinases, and myosin phosphatase. Physiol Rev (2003) 9.32

Loss of caveolae, vascular dysfunction, and pulmonary defects in caveolin-1 gene-disrupted mice. Science (2001) 8.53

The fine structure of the gall bladder epithelium of the mouse. J Biophys Biochem Cytol (1955) 7.88

Caveolin-1 null mice are viable but show evidence of hyperproliferative and vascular abnormalities. J Biol Chem (2001) 7.03

Caveolins, a family of scaffolding proteins for organizing "preassembled signaling complexes" at the plasma membrane. J Biol Chem (1998) 6.26

Role of caveolae and caveolins in health and disease. Physiol Rev (2004) 4.55

Defects in caveolin-1 cause dilated cardiomyopathy and pulmonary hypertension in knockout mice. Proc Natl Acad Sci U S A (2002) 3.13

Cysteine3 of Src family protein tyrosine kinase determines palmitoylation and localization in caveolae. J Cell Biol (1994) 3.12

Induction of caveolin during adipogenesis and association of GLUT4 with caveolin-rich vesicles. J Cell Biol (1994) 2.69

Assembly of Trp1 in a signaling complex associated with caveolin-scaffolding lipid raft domains. J Biol Chem (2000) 2.43

Functional coupling of ryanodine receptors to KCa channels in smooth muscle cells from rat cerebral arteries. J Gen Physiol (1999) 2.42

Genetic ablation of caveolin-1 confers protection against atherosclerosis. Arterioscler Thromb Vasc Biol (2003) 2.33

Glycolysis preferentially inhibits ATP-sensitive K+ channels in isolated guinea pig cardiac myocytes. Science (1987) 2.26

Caveolae and caveolins in the cardiovascular system. Circ Res (2004) 2.24

Caveolin-1 expression is critical for vascular endothelial growth factor-induced ischemic hindlimb collateralization and nitric oxide-mediated angiogenesis. Circ Res (2004) 1.71

Ouabain assembles signaling cascades through the caveolar Na+/K+-ATPase. J Biol Chem (2004) 1.71

Ignition of calcium sparks in arterial and cardiac muscle through caveolae. Circ Res (2000) 1.71

Retracted Caveolin-1 is essential for activation of Rac1 and NAD(P)H oxidase after angiotensin II type 1 receptor stimulation in vascular smooth muscle cells: role in redox signaling and vascular hypertrophy. Arterioscler Thromb Vasc Biol (2005) 1.63

Caveolin-1 facilitates mechanosensitive protein kinase B (Akt) signaling in vitro and in vivo. Circ Res (2005) 1.55

Coupling of c-Src to large conductance voltage- and Ca2+-activated K+ channels as a new mechanism of agonist-induced vasoconstriction. Proc Natl Acad Sci U S A (2002) 1.55

Caveolin-1 can regulate vascular smooth muscle cell fate by switching platelet-derived growth factor signaling from a proliferative to an apoptotic pathway. Arterioscler Thromb Vasc Biol (2003) 1.50

Plasticity of TRPC expression in arterial smooth muscle: correlation with store-operated Ca2+ entry. Am J Physiol Cell Physiol (2004) 1.43

Cholesterol depletion impairs vascular reactivity to endothelin-1 by reducing store-operated Ca2+ entry dependent on TRPC1. Circ Res (2003) 1.38

Caveolin-1 interacts with 5-HT2A serotonin receptors and profoundly modulates the signaling of selected Galphaq-coupled protein receptors. J Biol Chem (2004) 1.37

Local Ca(2+) transients and distribution of BK channels and ryanodine receptors in smooth muscle cells of guinea-pig vas deferens and urinary bladder. J Physiol (2001) 1.35

Caveolae localize protein kinase A signaling to arterial ATP-sensitive potassium channels. Circ Res (2004) 1.34

Cholesterol depletion disrupts caveolae and differentially impairs agonist-induced arterial contraction. Arterioscler Thromb Vasc Biol (2002) 1.33

K+ depolarization induces RhoA kinase translocation to caveolae and Ca2+ sensitization of arterial muscle. Am J Physiol Cell Physiol (2003) 1.33

Codistribution of NOS and caveolin throughout peripheral vasculature and skeletal muscle of hamsters. Am J Physiol (1999) 1.31

Caveolae from canine airway smooth muscle contain the necessary components for a role in Ca(2+) handling. Am J Physiol Lung Cell Mol Physiol (2000) 1.26

Calcium oscillation linked to pacemaking of interstitial cells of Cajal: requirement of calcium influx and localization of TRP4 in caveolae. J Biol Chem (2002) 1.26

Calcium signalling in smooth muscle. Cell Calcium (2005) 1.25

Preferential support of Ca2+ uptake in smooth muscle plasma membrane vesicles by an endogenous glycolytic cascade. FASEB J (1989) 1.25

Compartmentation of glycolytic and glycogenolytic metabolism in vascular smooth muscle. Science (1983) 1.22

Caveolin-1 deficiency stimulates neointima formation during vascular injury. Biochemistry (2004) 1.22

Store-operated Ca2+-permeable non-selective cation channels in smooth muscle cells. Cell Calcium (2003) 1.21

Imaging microdomain Ca2+ in muscle cells. Circ Res (2004) 1.17

5-HT(2A) receptors: location and functional analysis in intestines of wild-type and 5-HT(2A) knockout mice. Am J Physiol Gastrointest Liver Physiol (2002) 1.09

Smooth muscle energetics. Annu Rev Physiol (1989) 1.08

The double regulation of endothelial nitric oxide synthase by caveolae and caveolin: a paradox solved through the study of angiogenesis. Trends Cardiovasc Med (2005) 1.08

Comparison of endogenous and exogenous sources of ATP in fueling Ca2+ uptake in smooth muscle plasma membrane vesicles. J Gen Physiol (1992) 1.08

Inhibition of PKCalpha and rhoA translocation in differentiated smooth muscle by a caveolin scaffolding domain peptide. Exp Cell Res (2000) 1.07

The caveolar paradox: suppressing, inducing, and terminating eNOS signaling. Circ Res (2001) 1.06

Caveolin-1 regulates contractility in differentiated vascular smooth muscle. Am J Physiol Heart Circ Physiol (2003) 1.03

Smooth muscle excitation-contraction coupling: a role for caveolae and caveolins? News Physiol Sci (2001) 1.03

Decreased caveolin-1 in atheroma: loss of antiproliferative control of vascular smooth muscle cells in atherosclerosis. Cardiovasc Res (2005) 1.02

Diminished surface clustering and increased perinuclear accumulation of large conductance Ca2+-activated K+ channel in mouse myometrium with pregnancy. J Biol Chem (2003) 1.01

Urogenital alterations in aged male caveolin-1 knockout mice. J Urol (2004) 1.00

Cellular redistribution of PKCalpha, rhoA, and ROKalpha following smooth muscle agonist stimulation. Exp Cell Res (1999) 1.00

The nature of fuel provision for the Na+,K(+)-ATPase in porcine vascular smooth muscle. J Physiol (1992) 0.98

Caveolae-associated signalling in smooth muscle. Can J Physiol Pharmacol (2004) 0.97

Expression of caveolae on the surface of rat arterial smooth muscle cells is dependent on the phenotypic state of the cells. Lab Invest (1997) 0.95

Overexpression of caveolin-1 results in increased plasma membrane targeting of glycolytic enzymes: the structural basis for a membrane associated metabolic compartment. J Cell Biochem (2006) 0.94

Role of caveolae in ouabain-induced proliferation of cultured vascular smooth muscle cells of the synthetic phenotype. Am J Physiol Heart Circ Physiol (2004) 0.93

Na,K-ATPase as a signal transducer. Ann N Y Acad Sci (2003) 0.92

Urokinase signal transduction and its role in cell migration. FASEB J (2005) 0.92

Compartmentation of carbohydrate metabolism in vascular smooth muscle. Am J Physiol (1987) 0.92

Expression of caveolin-1 in lymphocytes induces caveolae formation and recruitment of phosphofructokinase to the plasma membrane. FASEB J (2005) 0.87

Expression of caveolin-3 in rat aortic vascular smooth muscle cells is determined by developmental state. Biochem Biophys Res Commun (2003) 0.86

Caveolin; different roles for insulin signal? Cell Signal (2005) 0.85

Differences in caveolae dynamics in vascular smooth muscle cells of different phenotypes. Lab Invest (2000) 0.85

Simultaneous and separable flux of pathways for glucose and glycogen utilization studied by 13C-NMR. J Mol Cell Cardiol (1994) 0.84

Phosphofructokinase muscle-specific isoform requires caveolin-3 expression for plasma membrane recruitment and caveolar targeting: implications for the pathogenesis of caveolin-related muscle diseases. Am J Pathol (2003) 0.84

Compartmentation of glucose and fructose 1,6-bisphosphate metabolism in vascular smooth muscle. Biochemistry (1995) 0.79

Caveolae and the organization of carbohydrate metabolism in vascular smooth muscle. J Cell Biochem (2001) 0.79

Metabolic organization in vascular smooth muscle: distribution and localization of caveolin-1 and phosphofructokinase. Am J Physiol Cell Physiol (2003) 0.79

Caveolin-1 functions as a scaffolding protein for phosphofructokinase in the metabolic organization of vascular smooth muscle. Biochemistry (2004) 0.79

Modulation of cyclin D1 and early growth response factor-1 gene expression in interleukin-1beta-treated rat smooth muscle cells by n-6 and n-3 polyunsaturated fatty acids. Eur J Biochem (2004) 0.79

Effects of hypoxia on the distribution of calcium in arterial smooth muscle cells of rats and swine. Cell Tissue Res (1975) 0.77