S. Doi et al., Capacitative Ca2+ entry and tyrosine kinase activation in canine pulmonaryarterial smooth muscle cells, AM J P-LUNG, 278(1), 2000, pp. L118-L130
Citations number
38
Categorie Soggetti
da verificare
Journal title
AMERICAN JOURNAL OF PHYSIOLOGY-LUNG CELLULAR AND MOLECULAR PHYSIOLOGY
We investigated the role of capacitative Ca2+ entry and tyrosine kinase act
ivation in mediating phenylephrine (PE)-induced oscillations in intracellul
ar free Ca2+ concentration ([Ca2+](i)) in canine pulmonary arterial smooth
muscle cells (PASMCs). [Ca2+](i) was measured as the 340- to 380-nm ratio i
n individual fura 2-loaded PASMCs. Resting [Ca2+](i) was 96 +/- 4 nmol/l. P
E (10 mu mol/l) stimulated oscillations in [Ca2+](i), with a peak amplitude
of 437 +/- 22 nmol/l and a frequency of 1.01 +/- 0.12/min. Thapsigargin (1
mu mol/l) was used to deplete sarcoplasmic reticulum (SR) Ca2+ after extra
cellular Ca2+ was removed. Under these conditions, a nifedipine-insensitive
, sustained increase in [Ca2+](i) (140 +/- 7% of control value) was observe
d when the extracellular Ca2+ concentration was restored; i.e., capacitativ
e Ca2+ entry was demonstrated. Capacitative Ca2+ entry also refilled SR Ca2
+ stores. Capacitative Ca2+ entry was attenuated (32 +/- 3% of control valu
e) by 50 mu mol/l of SKF-96365 (a nonselective Ca2+-channel inhibitor). Tyr
osine kinase inhibition with tyrphostin 23 (100 mu mol/l) and genistein (10
0 mu mol/l) also inhibited capacitative Ca2+ entry to 63 +/- 12 and 85 +/-
4% of control values, respectively. SKF-96365 (30 mu mol/l) attenuated both
the amplitude (15 +/- 7% of control value) and frequency (50 +/- 21% of co
ntrol value) of PE-induced Ca2+ oscillations. SKF-96365 (50 mu mol/l) aboli
shed the oscillations. Tyrphostin 23 (100 mu mol/l) also inhibited the ampl
itude (17 +/- 7% of control value) and frequency (45 +/- 9% of control valu
e) of the oscillations. Genistein (30 mu mol/l) had similar effects. Both S
KF-96365 and tyrphostin 23 attenuated PE-induced contraction in isolated pu
lmonary arterial rings. These results demonstrate that capacitative Ca2+ en
try is present and capable of refilling SR Ca2+ stores in canine PASMCs and
may be involved in regulating PE-induced Ca2+ oscillations. A tyrosine kin
ase is involved in the signal transduction pathway for alpha(1)-adrenorecep
tor activation in PASMCs.