Calcium (Ca2+) ions comprise critical second messengers for a wide variety of cellularprocesses, including gene expression, cell proliferation and death, and metabolism; neurons are noexception to this. Intraneuronal Ca2+ handling regulates processes such as long-term potentiation(LTP), synaptic transmission, and generation of firing patterns. Subsequently, disruptions ofneuronal Ca2+ has been implicated in several neuropsychiatric and neurodegenerative disorders. Akey component of the neuronal Ca2+ handling toolkit is the sarco/endoplasmic reticulumCa2+ ATPase (SERCA) pump, specifically the SERCA2 isoform. We have recently identified anovel SERCA regulator to be expressed in the central nervous system. In the context of the currentthesis, ...
Ca2+ signals regulate most aspects of animal cell life. They are of particular importance to the ner...
International audienceCytosolic calcium (Ca$^{2+}$) transients control key neural processes, includi...
International audienceCytosolic calcium (Ca$^{2+}$) transients control key neural processes, includi...
Calcium (Ca2+) ions are critical regulators of neural cell function and survival, while disruption o...
Calcium (Ca2+) ions are potent regulators of cell fate, as they carry essential information for surv...
Intracellular calcium (Ca2+) homeostasis in the brain is critical for cell function and survival. Di...
Intracellular calcium ([Ca2+]i) is an ubiquitous second messenger that integrates multiple and diver...
Intracellular calcium ([Ca2+]i) is an ubiquitous second messenger that integrates multiple and diver...
Calcium ions are potent regulators of cell fate, as they carry essential information from egg fertil...
In both excitable and non-excitable cells, calcium (Ca2+) signals are maintained by a highly integra...
The regulation of calcium (Ca²⁺) was examined during long-term changes of neuronal excitability in t...
In both excitable and non-excitable cells, calcium (Ca2+) signals are maintained by a highly integra...
In both excitable and non-excitable cells, calcium (Ca2+) signals are maintained by a highly integra...
International audienceCytosolic calcium (Ca$^{2+}$) transients control key neural processes, includi...
International audienceCytosolic calcium (Ca$^{2+}$) transients control key neural processes, includi...
Ca2+ signals regulate most aspects of animal cell life. They are of particular importance to the ner...
International audienceCytosolic calcium (Ca$^{2+}$) transients control key neural processes, includi...
International audienceCytosolic calcium (Ca$^{2+}$) transients control key neural processes, includi...
Calcium (Ca2+) ions are critical regulators of neural cell function and survival, while disruption o...
Calcium (Ca2+) ions are potent regulators of cell fate, as they carry essential information for surv...
Intracellular calcium (Ca2+) homeostasis in the brain is critical for cell function and survival. Di...
Intracellular calcium ([Ca2+]i) is an ubiquitous second messenger that integrates multiple and diver...
Intracellular calcium ([Ca2+]i) is an ubiquitous second messenger that integrates multiple and diver...
Calcium ions are potent regulators of cell fate, as they carry essential information from egg fertil...
In both excitable and non-excitable cells, calcium (Ca2+) signals are maintained by a highly integra...
The regulation of calcium (Ca²⁺) was examined during long-term changes of neuronal excitability in t...
In both excitable and non-excitable cells, calcium (Ca2+) signals are maintained by a highly integra...
In both excitable and non-excitable cells, calcium (Ca2+) signals are maintained by a highly integra...
International audienceCytosolic calcium (Ca$^{2+}$) transients control key neural processes, includi...
International audienceCytosolic calcium (Ca$^{2+}$) transients control key neural processes, includi...
Ca2+ signals regulate most aspects of animal cell life. They are of particular importance to the ner...
International audienceCytosolic calcium (Ca$^{2+}$) transients control key neural processes, includi...
International audienceCytosolic calcium (Ca$^{2+}$) transients control key neural processes, includi...