The size and shape of neuronal dendritic arbors affect the number and type of synaptic inputs, as well as the complexity and function of brain circuits. In the intact brain, dendritic arbor growth and the development of excitatory glutamatergic synapse are concurrent. Consequently, it has been difficult to resolve whether synaptic inputs drive dendritic arbor development. Here, we test the role of AMPA receptor (AMPAR)-mediated glutamatergic transmission in dendrite growth by expressing peptides corresponding to the intracellular C-terminal domains of AMPAR subunits GluR1 (GluR1Ct) and GluR2 (GluR2Ct) in optic tectal neurons of the Xenopus retinotectal system. These peptides significantly reduce AMPAR synaptic transmission in transfected ne...
Excitatory transmission in the brain is largely mediated by synapses containing the neurotransmitter...
Regulation of AMPA receptor (AMPAR) expression is central to synaptic plasticity and brain function,...
Regulation of AMPA receptor (AMPAR) expression is central to synaptic plasticity and brain function,...
Previous studies suggest that neuronal activity may guide the development of synaptic connections in...
Brief metabotropic glutamate receptor (mGluR) activation leads to plasticity of AMPA receptor (AMPAR...
In vivo imaging of optic tectal neurons in the intact Xenopus tadpole permits direct observation of ...
The emergence of dendritic arbor structure in vivo depends on synaptic inputs. We tested whether inh...
The development and structural plasticity of dendritic arbors are governed by several factors, inclu...
Activity-dependent dendrite elaboration influences the pattern of interneuronal connectivity and net...
AbstractCa2+-permeable AMPARs are inwardly rectifying due to block by intracellular polyamines. Neur...
To investigate the role of N-methyl-D-aspartate (NMDA) receptor activity in the stability of the pre...
Synapses in the brain are continuously modified by experience, but the mechanisms are poorly underst...
Understanding how the subcellular fate of newly synthesized AMPA receptors (AMPARs) is controlled is...
Neurotransmission during development regulates synaptic maturation in neural circuits, but the contr...
Ca2+-permeable AMPARs are inwardly rectifying due to block by intracellular polyamines. Neuronal act...
Excitatory transmission in the brain is largely mediated by synapses containing the neurotransmitter...
Regulation of AMPA receptor (AMPAR) expression is central to synaptic plasticity and brain function,...
Regulation of AMPA receptor (AMPAR) expression is central to synaptic plasticity and brain function,...
Previous studies suggest that neuronal activity may guide the development of synaptic connections in...
Brief metabotropic glutamate receptor (mGluR) activation leads to plasticity of AMPA receptor (AMPAR...
In vivo imaging of optic tectal neurons in the intact Xenopus tadpole permits direct observation of ...
The emergence of dendritic arbor structure in vivo depends on synaptic inputs. We tested whether inh...
The development and structural plasticity of dendritic arbors are governed by several factors, inclu...
Activity-dependent dendrite elaboration influences the pattern of interneuronal connectivity and net...
AbstractCa2+-permeable AMPARs are inwardly rectifying due to block by intracellular polyamines. Neur...
To investigate the role of N-methyl-D-aspartate (NMDA) receptor activity in the stability of the pre...
Synapses in the brain are continuously modified by experience, but the mechanisms are poorly underst...
Understanding how the subcellular fate of newly synthesized AMPA receptors (AMPARs) is controlled is...
Neurotransmission during development regulates synaptic maturation in neural circuits, but the contr...
Ca2+-permeable AMPARs are inwardly rectifying due to block by intracellular polyamines. Neuronal act...
Excitatory transmission in the brain is largely mediated by synapses containing the neurotransmitter...
Regulation of AMPA receptor (AMPAR) expression is central to synaptic plasticity and brain function,...
Regulation of AMPA receptor (AMPAR) expression is central to synaptic plasticity and brain function,...