EFFECT OF ENDOTHELIN-1 (1-31) ON EXTRACELLULAR SIGNAL-REGULATED KINASE AND PROLIFERATION OF HUMAN CORONARY-ARTERY SMOOTH-MUSCLE CELLS

Citation
M. Yoshizumi et al., EFFECT OF ENDOTHELIN-1 (1-31) ON EXTRACELLULAR SIGNAL-REGULATED KINASE AND PROLIFERATION OF HUMAN CORONARY-ARTERY SMOOTH-MUSCLE CELLS, British Journal of Pharmacology, 125(5), 1998, pp. 1019-1027
Citations number
41
Categorie Soggetti
Pharmacology & Pharmacy",Biology
ISSN journal
00071188
Volume
125
Issue
5
Year of publication
1998
Pages
1019 - 1027
Database
ISI
SICI code
0007-1188(1998)125:5<1019:EOE(OE>2.0.ZU;2-Q
Abstract
1 We have previously found that human chymase cleaves big endothelins (ETs) at the Tyr(31)-Gly(32) bond and produces 31-amino acid ETs (1-31 ), without any further degradation products. In this study, we investi gated the effect of synthetic ET-I (1-31) on the proliferation of cult ured human coronary artery smooth muscle cells (HCASMCs). 2 ET-1 (1-31 ) increased [H-3]-thymidine incorporation and cell numbers to a simila r extent as ET-1 at 100 nM. This ET-1 (1-31)-induced [H-3]-thymidine u ptake was not affected by phosphoramidon, an inhibitor of ET-convertin g enzyme. It was, however, inhibited by BQ123, an endothelin ETA recep tor antagonist, but not by BQ788, an endothelin ETB receptor antagonis t. 3 By using an in-gel kinase assay, we demonstrated that ET-1(1-31) activated extracellular signal-regulated kinase 1/2 (ERK1/2) in a conc entration-dependent manner (100 pM to 1 mu M) in HCASMCs. ET-I (1-31)- induced ERK1/2 activation was inhibited by BQ123, but not by BQ788 and phosphoramidon. Inhibition of protein kinase C (PKC) and ERK kinase a lso caused a reduction of ET-1 (1-31)-induced ERK1/2 activation, where as tyrosine kinase inhibition had little effect. 4 Gel-mobility shift analysis revealed that the ERK1/2 activation was followed by an increa se in transcription factor activator protein-1 DNA binding activity in HCASMCs. 5 Our results strongly suggest that ET-1 (1-31) itself stimu lates HCASMC proliferation probably through endothelin ETA or ETA-like receptors. The underlining mechanism of cell growth by ET-I (1-31) ma y be explained in part by PKC-dependent ERK1/2 activation. Since human chymase has been proposed to play a role in atherosclerosis, ET-1 (1- 31) may be one of the mediators.