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PMID: 11864926 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

HMG-CoA reductase inhibitors suppress intracellular calcium mobilization and membrane current induced by lysophosphatidylcholine in endothelial cells.

Circulation ·Vol. 105 ·No. 8 ·2002-02-26 ·Pages 962-7

Yokoyama K, Ishibashi T, Ohkawara H, Kimura J, Matsuoka I, Sakamoto T, Nagata K, Sugimoto K, Sakurada S, Maruyama Y

Abstract

Lysophosphatidylcholine (LPC) is known to increase intracellular Ca2+ concentration ([Ca2+]i) in endothelial cells. This study was conducted to investigate the effects of HMG-CoA reductase inhibitors (statins) on the increase in [Ca2+]i and membrane current induced by LPC. [Ca2+]i was determined in cultured human aortic endothelial cells by fura-2 assay, and membrane current was measured by whole-cell patch clamp. The [Ca2+]i increase induced by LPC was abolished by inhibitors of phospholipase C (PLC). Statins markedly decreased the [Ca2+]i increase caused by LPC. This suppressive effect was quickly reversed by geranylgeranylpyrophosphate (GGPP) and was mimicked by inhibitors of Rho and Rho kinase. LPC induced the translocation of the GTP-bound active form of RhoA into membranes within 1 minute as determined by a pull-down assay and reduced the levels of RhoA in the cytoplasm, indicating that LPC quickly increases the GTP/GDP ratio of RhoA and induces membrane translocation. Statins prevented the GTP/GDP exchange of RhoA and its membrane translocation from the cytoplasm caused by LPC, and these effects of statins were reversed by GGPP. The responses of RhoA activation to statins and GGPP concurred with their effects on Ca2+ mobilization. LPC also induced a nonselective cation current after a lag. Statins prolonged the lag and decreased the current amplitude, and GGPP abolished the inhibitory effect on the current. LPC induced Ca2+ mobilization and membrane current via a Rho activation-dependent PLC pathway in endothelial cells, and statins blocked these effects by preventing the GGPP-dependent lipid modification of Rho. The present study implicates Rho in LPC stimulation of Ca2+ movement.

MeSH Terms
ADP Ribose Transferases/pharmacology Amides/pharmacology Aorta Botulinum Toxins Calcium/metabolism Cells, Cultured Endothelium, Vascular/cytology,drug effects,metabolism Enzyme Inhibitors/pharmacology Guanosine Diphosphate/metabolism Guanosine Triphosphate/metabolism Humans Hydroxymethylglutaryl-CoA Reductase Inhibitors/pharmacology Intracellular Fluid/metabolism Intracellular Signaling Peptides and Proteins Lysophosphatidylcholines/antagonists & inhibitors,pharmacology Membrane Potentials/drug effects Mevalonic Acid/pharmacology Patch-Clamp Techniques Polyisoprenyl Phosphates/pharmacology Protein Serine-Threonine Kinases/antagonists & inhibitors Pyridines/pharmacology Signal Transduction/drug effects Type C Phospholipases/antagonists & inhibitors rho-Associated Kinases rhoA GTP-Binding Protein/antagonists & inhibitors,metabolism
Chemicals
Amides Enzyme Inhibitors Hydroxymethylglutaryl-CoA Reductase Inhibitors Intracellular Signaling Peptides and Proteins Lysophosphatidylcholines Polyisoprenyl Phosphates Pyridines Y 27632 Guanosine Diphosphate Guanosine Triphosphate ADP Ribose Transferases exoenzyme C3, Clostridium botulinum Protein Serine-Threonine Kinases rho-Associated Kinases Type C Phospholipases Botulinum Toxins rhoA GTP-Binding Protein geranylgeranyl pyrophosphate Mevalonic Acid Calcium
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Yokoyama Keiko
First Department of Internal Medicine, Fukushima Medical University, Fukushima, Japan.
Ishibashi Toshiyuki
Ohkawara Hiroshi
Kimura Junko
Matsuoka Isao
Sakamoto Takayuki
Nagata Kenji
Sugimoto Koichi
Sakurada Sotaro
Maruyama Yukio
Article Info
Journal
Circulation
Abbr.
Circulation
ISSN
1524-4539
Published
2002-02-26
Pages
962-7
Language
English
Region
United States
NLM ID
0147763
Subset
IM
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