Lipid molecules such as arachidonic acid (AA) and sphingolipid metabolites have been implicated in modulation of neuronal and endocrine secretion. Here we compare the effects of these lipids on secretion from cultured bovine chromaffin cells. First, we demonstrate that exogenous sphingosine and AA interact with the secretory apparatus as confirmed by FRET experiments. Examination of plasma membrane SNARE microdomains and chromaffin granule dynamics using total internal reflection fluorescent microscopy (TIRFM) suggests that sphingosine production promotes granule tethering while arachidonic acid promotes full docking. Our analysis of single granule release kinetics by amperometry demonstrated that both sphingomyelinase and AA treatments enh...
AbstractNeuronal sphingolipids (SL) play important roles during axonal extension, neurotrophic recep...
AbstractIn neurosecretory cells, intracellular Ca2+ ([Ca2+]i) not only acts as the trigger for secre...
Neurons and neuroendocrine cells release transmitters and hormones by exocytosis of secrctory vesicl...
Lipid molecules such as arachidonic acid (AA) and sphingolipid metabolites have been implicated in m...
Sphingomyelin derivatives like sphingosine have been shown to enhance secretion in a variety of syst...
The regulated secretory pathway in neuroendocrine cells ends with the release of hormones and neurot...
The relationship between catecholamine secretion and arachidonic acid release from digitonin-treated...
Membrane fusion is a key event in exocytosis of neurotransmitters and hormones stored in intracellul...
Increased arachidonic acid release occurred during activation of catecholamine secretion from cul- t...
Recent studies in neuroendocrine chromaffin cells have suggested that the secretory granule release ...
For neurotransmitter release to occur, proteins and lipids have to work together. The classical view...
Calcium-regulated exocytosis in neuroendocrine cells and neurons is accompanied by the redistributio...
During exocytosis a rise in cytosolic Ca('2+) triggers fusion of the secretory vesicle membrane with...
Neuronal communication relies on the fusion of neurotransmitter-containing vesicles with the neurona...
AbstractSyntaxin 1A and synaptotagmin I are key participants of fusion complex formation during exoc...
AbstractNeuronal sphingolipids (SL) play important roles during axonal extension, neurotrophic recep...
AbstractIn neurosecretory cells, intracellular Ca2+ ([Ca2+]i) not only acts as the trigger for secre...
Neurons and neuroendocrine cells release transmitters and hormones by exocytosis of secrctory vesicl...
Lipid molecules such as arachidonic acid (AA) and sphingolipid metabolites have been implicated in m...
Sphingomyelin derivatives like sphingosine have been shown to enhance secretion in a variety of syst...
The regulated secretory pathway in neuroendocrine cells ends with the release of hormones and neurot...
The relationship between catecholamine secretion and arachidonic acid release from digitonin-treated...
Membrane fusion is a key event in exocytosis of neurotransmitters and hormones stored in intracellul...
Increased arachidonic acid release occurred during activation of catecholamine secretion from cul- t...
Recent studies in neuroendocrine chromaffin cells have suggested that the secretory granule release ...
For neurotransmitter release to occur, proteins and lipids have to work together. The classical view...
Calcium-regulated exocytosis in neuroendocrine cells and neurons is accompanied by the redistributio...
During exocytosis a rise in cytosolic Ca('2+) triggers fusion of the secretory vesicle membrane with...
Neuronal communication relies on the fusion of neurotransmitter-containing vesicles with the neurona...
AbstractSyntaxin 1A and synaptotagmin I are key participants of fusion complex formation during exoc...
AbstractNeuronal sphingolipids (SL) play important roles during axonal extension, neurotrophic recep...
AbstractIn neurosecretory cells, intracellular Ca2+ ([Ca2+]i) not only acts as the trigger for secre...
Neurons and neuroendocrine cells release transmitters and hormones by exocytosis of secrctory vesicl...