AbstractAn important aspect of Ca2+ signaling is the ability of cells to generate intracellular Ca2+ waves. In this study we have analyzed the cellular and subcellular kinetics of Ca2+ waves in a neuroendocrine transducer cell, the melanotrope of Xenopus laevis, using the ratiometric Ca2+ probe indo-1 and video-rate UV confocal laser-scanning microscopy. The purpose of the present study was to investigate how local Ca2+ changes contribute to a global Ca2+ signal; subsequently we quantified how a Ca2+ wave is kinetically reshaped as it is propagated through the cell. The combined kinetics of all subcellular Ca2+ signals determined the shape of the total cellular Ca2+ signal, but each subcellular contribution to the cellular signal was not co...
Inositol 1,4,5-trisphosphate (InsP3) acts on intracellular receptors to cause liberation of Ca2+ ion...
Background: During Xenopus gastrulation, cell intercalation drives convergent extension of dorsal ti...
AbstractRecent studies have suggested that global intracellular Ca2+ signals arise from the summatio...
AbstractAn important aspect of Ca2+ signaling is the ability of cells to generate intracellular Ca2+...
Item does not contain fulltextThe pituitary melanotrope cell of Xenopus laevis displays cytosolic Ca...
We construct a minimal model of cytosolic free Ca2+ oscillations based on Ca2+ release via the inosi...
Biological excitability enables the rapid transmission of physiological signals over distance. Using...
AbstractInsP3-evoked elementary Ca2+ release events have been postulated to play a role in providing...
Calcium (Ca2+) is a ubiquitous intracellular messenger, controlling a diverse range of cellular proc...
A minimal model is presented to explain changes in frequency, shape, and amplitude of Ca2+ oscillati...
Cytosolic Ca2+ waves occur in a number of cell types either spontaneously or after stimulation by ho...
AbstractThe liberation of calcium ions sequestered in the endoplasmic reticulum through inositol 1,4...
Ca2+ liberation through inositol 1,4,5-trisphosphate receptors (IP3Rs) plays a universal role in cel...
AbstractEmbryonic Xenopus myocytes generate spontaneous calcium (Ca2+) transients during differentia...
Calcium (Ca2+) signals are ubiquitous. Most intracellular Ca2+ signals involve the release of Ca2+ f...
Inositol 1,4,5-trisphosphate (InsP3) acts on intracellular receptors to cause liberation of Ca2+ ion...
Background: During Xenopus gastrulation, cell intercalation drives convergent extension of dorsal ti...
AbstractRecent studies have suggested that global intracellular Ca2+ signals arise from the summatio...
AbstractAn important aspect of Ca2+ signaling is the ability of cells to generate intracellular Ca2+...
Item does not contain fulltextThe pituitary melanotrope cell of Xenopus laevis displays cytosolic Ca...
We construct a minimal model of cytosolic free Ca2+ oscillations based on Ca2+ release via the inosi...
Biological excitability enables the rapid transmission of physiological signals over distance. Using...
AbstractInsP3-evoked elementary Ca2+ release events have been postulated to play a role in providing...
Calcium (Ca2+) is a ubiquitous intracellular messenger, controlling a diverse range of cellular proc...
A minimal model is presented to explain changes in frequency, shape, and amplitude of Ca2+ oscillati...
Cytosolic Ca2+ waves occur in a number of cell types either spontaneously or after stimulation by ho...
AbstractThe liberation of calcium ions sequestered in the endoplasmic reticulum through inositol 1,4...
Ca2+ liberation through inositol 1,4,5-trisphosphate receptors (IP3Rs) plays a universal role in cel...
AbstractEmbryonic Xenopus myocytes generate spontaneous calcium (Ca2+) transients during differentia...
Calcium (Ca2+) signals are ubiquitous. Most intracellular Ca2+ signals involve the release of Ca2+ f...
Inositol 1,4,5-trisphosphate (InsP3) acts on intracellular receptors to cause liberation of Ca2+ ion...
Background: During Xenopus gastrulation, cell intercalation drives convergent extension of dorsal ti...
AbstractRecent studies have suggested that global intracellular Ca2+ signals arise from the summatio...