The Journal of General Physiology
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Published 24 April 2000. doi:10.1085/jgp.115.5.653
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© The Rockefeller University Press, 0022-1295/2000/5/653/ $5.00
The Journal of General Phyiology, Volume 115, Number 5, May 1, 2000 653-662


Original Article

Calcium-induced Calcium Release in Smooth Muscle: Loose Coupling between the Action Potential and Calcium Release

M.L. Colliera, G. Jia, Y.-X. Wanga, and M.I. Kotlikoffa
a Department of Animal Biology, School of Veterinary Medicine, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6046

Correspondence to: M.I. Kotlikoff, Department of Animal Biology, University of Pennsylvania, 3800 Spruce Street, Philadelphia, PA 19104-6046. Fax:215-573-6810 E-mail:mik{at}vet.upenn.edu.

Calcium-induced calcium release (CICR) has been observed in cardiac myocytes as elementary calcium release events (calcium sparks) associated with the opening of L-type Ca2+ channels. In heart cells, a tight coupling between the gating of single L-type Ca2+ channels and ryanodine receptors (RYRs) underlies calcium release. Here we demonstrate that L-type Ca2+ channels activate RYRs to produce CICR in smooth muscle cells in the form of Ca2+ sparks and propagated Ca2+ waves. However, unlike CICR in cardiac muscle, RYR channel opening is not tightly linked to the gating of L-type Ca2+ channels. L-type Ca2+ channels can open without triggering Ca2+ sparks and triggered Ca2+ sparks are often observed after channel closure. CICR is a function of the net flux of Ca2+ ions into the cytosol, rather than the single channel amplitude of L-type Ca2+ channels. Moreover, unlike CICR in striated muscle, calcium release is completely eliminated by cytosolic calcium buffering. Thus, L-type Ca2+ channels are loosely coupled to RYR through an increase in global [Ca2+] due to an increase in the effective distance between L-type Ca2+ channels and RYR, resulting in an uncoupling of the obligate relationship that exists in striated muscle between the action potential and calcium release.

Key Words: calcium-induced calcium release, smooth muscle, Ca2+ sparks, excitation–contraction coupling, action potential signaling


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