Astrocytes express a variety of metabotropic receptors and their activation leads to a biphasic Ca2+ response due to Ca2+ release from intracellular stores and subsequent capacitative Ca2+ entry. We performed Ca2+ imaging with Fura-2 on cultured mouse astrocytes and showed that extracellular zinc reversibly blocks the capacitative Ca 2+ entry following application of the metabotropic ligands ATP, glutamate and endothelin-1. Zinc blocked the plateau phase of the ligand-triggered Ca2+ responses. When ligands were repetitively applied in the presence of zinc the calcium responses progressively decayed and even disappeared, indicating that capacitative Ca2+ entry is required to refill the stores. Zinc inhibited the capacitative Ca2+ entry with ...
SummaryDecades after the discovery that ionic zinc is present at high levels in glutamatergic synapt...
International audienceNeuronal calcium sensors (NCSs) are the family of EF-hand proteins mediating C...
Many excitatory synapses contain high levels of mobile zinc within glutamatergic vesicles. Although ...
SummaryDecades after the discovery that ionic zinc is present at high levels in glutamatergic synapt...
An important pool of chelatable zinc is present in the synaptic vesicles of mossy fiber terminals fr...
Several chemicals have been widely used to evaluate the involvement of free Ca(2+) in mechanisms und...
The role of zinc (Zn2+), a modulator of N-methyl-D-aspartate (NMDA) receptors, in regulating long-te...
International audienceZinc released from a subpopulation of glutamatergic synapses, mainly localized...
The role of zinc (Zn2+), a modulator of N-methyl-D-aspartate (NMDA) receptors, in regulating long-te...
The divalent cation zinc is found in the mammalian CNS either tightly bound to proteins or as a smal...
Zn2+ has been suggested to act as an intracellular signaling molecule due to its regulatory effects ...
Background Several chemicals have been widely used to evaluate the involvement of free Ca2+ in mech-...
Zinc is one of the most abundant divalent metal ion in the central nervous system, where it serves a...
In the last years, research has shown that zinc ions play an essential role in the physiology of bra...
The mammalian brain contains an abundance of zinc and stimulation of the mossy fibres in the hippoca...
SummaryDecades after the discovery that ionic zinc is present at high levels in glutamatergic synapt...
International audienceNeuronal calcium sensors (NCSs) are the family of EF-hand proteins mediating C...
Many excitatory synapses contain high levels of mobile zinc within glutamatergic vesicles. Although ...
SummaryDecades after the discovery that ionic zinc is present at high levels in glutamatergic synapt...
An important pool of chelatable zinc is present in the synaptic vesicles of mossy fiber terminals fr...
Several chemicals have been widely used to evaluate the involvement of free Ca(2+) in mechanisms und...
The role of zinc (Zn2+), a modulator of N-methyl-D-aspartate (NMDA) receptors, in regulating long-te...
International audienceZinc released from a subpopulation of glutamatergic synapses, mainly localized...
The role of zinc (Zn2+), a modulator of N-methyl-D-aspartate (NMDA) receptors, in regulating long-te...
The divalent cation zinc is found in the mammalian CNS either tightly bound to proteins or as a smal...
Zn2+ has been suggested to act as an intracellular signaling molecule due to its regulatory effects ...
Background Several chemicals have been widely used to evaluate the involvement of free Ca2+ in mech-...
Zinc is one of the most abundant divalent metal ion in the central nervous system, where it serves a...
In the last years, research has shown that zinc ions play an essential role in the physiology of bra...
The mammalian brain contains an abundance of zinc and stimulation of the mossy fibres in the hippoca...
SummaryDecades after the discovery that ionic zinc is present at high levels in glutamatergic synapt...
International audienceNeuronal calcium sensors (NCSs) are the family of EF-hand proteins mediating C...
Many excitatory synapses contain high levels of mobile zinc within glutamatergic vesicles. Although ...