SummaryActivity-dependent neurotransmitter switching engages genetic programs regulating transmitter synthesis, but the mechanism by which activity is transduced is unknown. We suppressed activity in single neurons in the embryonic spinal cord to determine whether glutamate-gamma-aminobutyric acid (GABA) switching is cell autonomous. Transmitter respecification did not occur, suggesting that it is homeostatically regulated by the level of activity in surrounding neurons. Graded increase in the number of silenced neurons in cultures led to graded decrease in the number of neurons expressing GABA, supporting non-cell-autonomous transmitter switching. We found that brain-derived neurotrophic factor (BDNF) is expressed in the spinal cord during...
Inhibitory neurotransmission is critical for neuronal circuit forma-tion. To examine whether inhibit...
Neurotransmitter specification, which is vital for appropriate communication between neurons, is dev...
Circuit function in the CNS relies on the balanced interplay of excitatory and inhibitory synaptic s...
Specification of neurotransmitters is a crucial and fundamental aspect of development. It allows the...
Specification of neurotransmitters is a crucial and fundamental aspect of development. It allows the...
We are intrigued by how electrical and intracellular calcium activity of neurons can regulate neurot...
We are intrigued by how electrical and intracellular calcium activity of neurons can regulate neurot...
The proper functioning of all nervous systems requires efficient communication among neurons. Neurot...
Excitability regulates many aspects of neuronal differentiation in addition to forming the basis for...
International audienceIn the mature healthy mammalian neuronal networks, γ-aminobutyric acid (GABA) ...
We used cultured hippocampal neurons to determine the signaling pathways mediating brain-derived neu...
In the mature healthy mammalian neuronal networks, γ-aminobutyric acid (GABA) mediates synaptic inhi...
Neurotrophin signaling via receptor tyrosine kinases is essential for the development and function o...
Neurotrophin signaling via receptor tyrosine kinases is essential for the development and function o...
Spontaneous electrical activity is a feature of the nervous system from early stages of development ...
Inhibitory neurotransmission is critical for neuronal circuit forma-tion. To examine whether inhibit...
Neurotransmitter specification, which is vital for appropriate communication between neurons, is dev...
Circuit function in the CNS relies on the balanced interplay of excitatory and inhibitory synaptic s...
Specification of neurotransmitters is a crucial and fundamental aspect of development. It allows the...
Specification of neurotransmitters is a crucial and fundamental aspect of development. It allows the...
We are intrigued by how electrical and intracellular calcium activity of neurons can regulate neurot...
We are intrigued by how electrical and intracellular calcium activity of neurons can regulate neurot...
The proper functioning of all nervous systems requires efficient communication among neurons. Neurot...
Excitability regulates many aspects of neuronal differentiation in addition to forming the basis for...
International audienceIn the mature healthy mammalian neuronal networks, γ-aminobutyric acid (GABA) ...
We used cultured hippocampal neurons to determine the signaling pathways mediating brain-derived neu...
In the mature healthy mammalian neuronal networks, γ-aminobutyric acid (GABA) mediates synaptic inhi...
Neurotrophin signaling via receptor tyrosine kinases is essential for the development and function o...
Neurotrophin signaling via receptor tyrosine kinases is essential for the development and function o...
Spontaneous electrical activity is a feature of the nervous system from early stages of development ...
Inhibitory neurotransmission is critical for neuronal circuit forma-tion. To examine whether inhibit...
Neurotransmitter specification, which is vital for appropriate communication between neurons, is dev...
Circuit function in the CNS relies on the balanced interplay of excitatory and inhibitory synaptic s...