Inhibition of Orai1-mediated Ca2+ entry is a key mechanism of the antiproliferative action of sirolimus in human arterial smooth muscle

Author:

König Sarah1,Browne Sara1,Doleschal Bernhard1,Schernthaner Michaela1,Poteser Michael1,Mächler Heinrich2,Wittchow Eric3,Braune Marlen3,Muik Martin4,Romanin Christoph4,Groschner Klaus1

Affiliation:

1. Institute of Biophysics, Medical University of Graz, Graz, Austria;

2. Department of Cardiac Surgery, Medical University of Graz, Graz, Austria;

3. Vascular Interventions Research and Deleopment Group, Biotronik Societas Europaea and Compagnie Kommanditgesellschaft, Erlangen, Germany; and

4. Institute of Biophysics, University of Linz, Linz, Austria

Abstract

Sirolimus (rapamycin) is used in drug-eluting stent strategies and proved clearly superior in this application compared with other immunomodulators such as pimecrolimus. The molecular basis of this action of sirolimus in the vascular system is still incompletely understood. Measurements of cell proliferation in human coronary artery smooth muscle cells (hCASM) demonstrated a higher antiproliferative activity of sirolimus compared with pimecrolimus. Although sirolimus lacks inhibitory effects on calcineurin, nuclear factor of activated T-cell activation in hCASM was suppressed to a similar extent by both drugs at 10 μM. Sirolimus, but not pimecrolimus, inhibited agonist-induced and store-operated Ca2+ entry as well as cAMP response element binding protein (CREB) phosphorylation in human arterial smooth muscle, suggesting the existence of an as-yet unrecognized inhibitory effect of sirolimus on Ca2+ signaling and Ca2+-dependent gene transcription. Electrophysiological experiments revealed that only sirolimus but not pimecrolimus significantly blocked the classical stromal interaction molecule/Orai-mediated, store-operated Ca2+ current reconstituted in human embryonic kidney cells (HEK293). A link between Orai function and proliferation was confirmed by dominant-negative knockout of Orai in hCASM. Analysis of the effects of sirolimus on cell proliferation and CREB activation in an in vitro model of arterial intervention using human aorta corroborated the ability of sirolimus to suppress stent implantation-induced CREB activation in human arteries. We suggest inhibition of store-operated Ca2+ entry based on Orai channels and the resulting suppression of Ca2+ transcription coupling as a key mechanism underlying the antiproliferative activity of sirolimus in human arteries. This mechanism of action is specific for sirolimus and not a general feature of drugs interacting with FK506-binding proteins.

Publisher

American Physiological Society

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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