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Lifshitz, Lawrence
One or more keywords matched the following items that are connected to
Lifshitz, Lawrence
Item Type
Name
Academic Article
Dihydropyridine receptors and type 1 ryanodine receptors constitute the molecular machinery for voltage-induced Ca2+ release in nerve terminals.
Academic Article
Caffeine-activated large-conductance plasma membrane cation channels in cardiac myocytes: characteristics and significance.
Academic Article
Suppression of Ca2+ syntillas increases spontaneous exocytosis in mouse adrenal chromaffin cells.
Academic Article
Spatial organization of RYRs and BK channels underlying the activation of STOCs by Ca(2+) sparks in airway myocytes.
Academic Article
Ca2+ syntillas, miniature Ca2+ release events in terminals of hypothalamic neurons, are increased in frequency by depolarization in the absence of Ca2+ influx.
Academic Article
Ca(2+) spark sites in smooth muscle cells are numerous and differ in number of ryanodine receptors, large-conductance K(+) channels, and coupling ratio between them.
Academic Article
Syntillas release Ca2+ at a site different from the microdomain where exocytosis occurs in mouse chromaffin cells.
Academic Article
A close association of RyRs with highly dense clusters of Ca2+-activated Cl- channels underlies the activation of STICs by Ca2+ sparks in mouse airway smooth muscle.
Concept
Ryanodine Receptor Calcium Release Channel
Academic Article
The molecular basis of the genesis of basal tone in internal anal sphincter.
Search Criteria
Ryanodine Receptor Calcium Release Channel