Ca2+-dependent Cl- channels in mouse and rabbit aortic smooth muscle cells: regulation by intracellular Ca2+ and NO

Citation
Y. Hirakawa et al., Ca2+-dependent Cl- channels in mouse and rabbit aortic smooth muscle cells: regulation by intracellular Ca2+ and NO, AM J P-HEAR, 277(5), 1999, pp. H1732-H1744
Citations number
38
Categorie Soggetti
Cardiovascular & Hematology Research
Journal title
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY
ISSN journal
03636135 → ACNP
Volume
277
Issue
5
Year of publication
1999
Pages
H1732 - H1744
Database
ISI
SICI code
0363-6135(199911)277:5<H1732:CCCIMA>2.0.ZU;2-L
Abstract
Ca2+-dependent Cl- (Cl-Ca(-)) channels and their regulation by intracellula r Ca2+ concentration ([Ca2+](i)) and nitric oxide (NO) were characterized i n mouse and rabbit aortic smooth muscle cells (SMC) using patch clamp and f ura 2 imaging. Single channels (1.8 pS) and whole cell Cl-Ca(-) currents we re activated by caffeine-induced Ca2+ release. Single Cl-Ca(-) channels wer e also activated by greater than or equal to 200 nM Ca2+ in inside-out memb rane patches and remained active for >5 min in less than or equal to 1 mu M Ca2+ but showed rapid rundown in 2 mM Ca2+. Authentic NO or S-nitroso-N-ac etylpenicillamine (SNAP) did not affect their activation or rundown in insi de-out patches. In the whole cell, SNAP (100 mu M) and 8-(4-chlorophenylthi o)-guanosine 3',5'-cyclic monophosphate (50 mu M) did not affect Cl-Ca(-) c urrent, but at a higher concentration SNAP (1 mM) induced a sustained [Ca2]i rise, accompanied by a dramatic decrease in caffeine-induced Ca2+ releas e and Cl-Ca(-) current. These results indicate that 1) mouse and rabbit aor tic SMC possess 1.8-pS Cl-Ca(-) channels that are activated by Ca2+ release from the stores, 2) both activation and rundown of single Cl-Ca(-), channe ls depend on [Ca2+](i), and 3) NO does not affect Cl-Ca(-) channels directl y or via cGMP but can inhibit their activation indirectly by decreasing Ca2 + release from the stores.