Adenylyl cyclase I regulates AMPA receptor trafficking during mouse cortical 'barrel' map development.

PubWeight™: 1.41‹?› | Rank: Top 5%

🔗 View Article (PMID 12897788)

Published in Nat Neurosci on September 01, 2003

Authors

Hui-Chen Lu1, Wei-Chi She, Daniel T Plas, Paul E Neumann, Roger Janz, Michael C Crair

Author Affiliations

1: Division of Neuroscience and Program in Developmental Biology, Baylor College of Medicine, One Baylor Plaza S-603, Houston, Texas 77030, USA. hlu@cns.tmc.edu

Articles citing this

The molecular pharmacology and cell biology of alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid receptors. Pharmacol Rev (2005) 1.96

Constitutive μ-opioid receptor activity leads to long-term endogenous analgesia and dependence. Science (2013) 1.91

A digital atlas to characterize the mouse brain transcriptome. PLoS Comput Biol (2005) 1.78

Laminar and columnar development of barrel cortex relies on thalamocortical neurotransmission. Neuron (2013) 1.74

Critical period plasticity is disrupted in the barrel cortex of FMR1 knockout mice. Neuron (2010) 1.72

Roles of mGluR5 in synaptic function and plasticity of the mouse thalamocortical pathway. Eur J Neurosci (2009) 1.60

Development and critical period plasticity of the barrel cortex. Eur J Neurosci (2012) 1.47

Acute and chronic dopamine receptor stimulation modulates AMPA receptor trafficking in nucleus accumbens neurons cocultured with prefrontal cortex neurons. J Neurosci (2008) 1.40

Altered phosphorylation and localization of the A-type channel, Kv4.2 in status epilepticus. J Neurochem (2008) 1.32

Interactions between NEEP21, GRIP1 and GluR2 regulate sorting and recycling of the glutamate receptor subunit GluR2. EMBO J (2005) 1.31

A role for synaptic plasticity in the adolescent development of executive function. Transl Psychiatry (2013) 1.27

Dissociation of experience-dependent and -independent changes in excitatory synaptic transmission during development of barrel cortex. Proc Natl Acad Sci U S A (2004) 1.11

Cortical adenylyl cyclase 1 is required for thalamocortical synapse maturation and aspects of layer IV barrel development. J Neurosci (2008) 1.11

Conditional Dnmt1 deletion in dorsal forebrain disrupts development of somatosensory barrel cortex and thalamocortical long-term potentiation. Thalamus Relat Syst (2005) 1.11

A mechanism underlying AMPA receptor trafficking during cerebellar long-term potentiation. Proc Natl Acad Sci U S A (2005) 1.11

AMPA-silent synapses in brain development and pathology. Nat Rev Neurosci (2013) 1.11

Distinct regional and subcellular localization of adenylyl cyclases type 1 and 8 in mouse brain. Neuroscience (2007) 1.08

Developmental synaptic plasticity at the thalamocortical input to barrel cortex: mechanisms and roles. Mol Cell Neurosci (2007) 1.06

Thalamocortical inputs show post-critical-period plasticity. Neuron (2012) 0.96

Distinct mechanisms of regulation by Ca2+/calmodulin of type 1 and 8 adenylyl cyclases support their different physiological roles. J Biol Chem (2008) 0.96

Differential dorso-ventral distributions of Kv4.2 and HCN proteins confer distinct integrative properties to hippocampal CA1 pyramidal cell distal dendrites. J Biol Chem (2012) 0.95

What can we get from 'barrels': the rodent barrel cortex as a model for studying the establishment of neural circuits. Eur J Neurosci (2011) 0.93

Role of adenylate cyclase 1 in retinofugal map development. J Comp Neurol (2012) 0.90

Calcium-dependent increases in protein kinase-A activity in mouse retinal ganglion cells are mediated by multiple adenylate cyclases. PLoS One (2009) 0.89

Adenylate cyclase 1 promotes strengthening and experience-dependent plasticity of whisker relay synapses in the thalamus. J Physiol (2011) 0.88

Endogenous analgesia, dependence, and latent pain sensitization. Curr Top Behav Neurosci (2014) 0.88

Diffusion dynamics of synaptic molecules during inhibitory postsynaptic plasticity. Front Cell Neurosci (2014) 0.84

Passive exercise of the hind limbs after complete thoracic transection of the spinal cord promotes cortical reorganization. PLoS One (2013) 0.83

The cyclic AMP phenotype of fragile X and autism. Neurosci Biobehav Rev (2008) 0.83

Postsynaptic deregulation in GAP-43 heterozygous mouse barrel cortex. Cereb Cortex (2009) 0.82

Competition driven by retinal waves promotes morphological and functional synaptic development of neurons in the superior colliculus. J Neurophysiol (2013) 0.81

Synapse maturation is enhanced in the binocular region of the retinocollicular map prior to eye opening. J Neurophysiol (2012) 0.80

Neurotransmission and bipolar disorder: a systematic family-based association study. Am J Med Genet B Neuropsychiatr Genet (2008) 0.79

Prenatal and Lactational Exposure to Bisphenol A in Mice Alters Expression of Genes Involved in Cortical Barrel Development without Morphological Changes. Acta Histochem Cytochem (2011) 0.78

AC-1 and synaptic development. J Physiol (2012) 0.75

Enhancement of postsynaptic GABAA and extrasynaptic NMDA receptor-mediated responses in the barrel cortex of Mecp2-null mice. J Neurophysiol (2015) 0.75

Articles by these authors

SV2 is the protein receptor for botulinum neurotoxin A. Science (2006) 4.51

Mutations in Drosophila sec15 reveal a function in neuronal targeting for a subset of exocyst components. Neuron (2005) 2.33

Retinal waves coordinate patterned activity throughout the developing visual system. Nature (2012) 2.00

Evidence for an instructive role of retinal activity in retinotopic map refinement in the superior colliculus of the mouse. J Neurosci (2005) 1.93

A digital atlas to characterize the mouse brain transcriptome. PLoS Comput Biol (2005) 1.78

Laminar and columnar development of barrel cortex relies on thalamocortical neurotransmission. Neuron (2013) 1.74

The immune protein CD3zeta is required for normal development of neural circuits in the retina. Neuron (2010) 1.74

State-dependent bidirectional modification of somatic inhibition in neocortical pyramidal cells. Neuron (2008) 1.66

Glycosylated SV2A and SV2B mediate the entry of botulinum neurotoxin E into neurons. Mol Biol Cell (2008) 1.66

Developmental homeostasis of mouse retinocollicular synapses. J Neurosci (2007) 1.52

An instructive role for patterned spontaneous retinal activity in mouse visual map development. Neuron (2011) 1.38

Brn3b/Brn3c double knockout mice reveal an unsuspected role for Brn3c in retinal ganglion cell axon outgrowth. Development (2002) 1.37

Distinct developmental programs require different levels of Bmp signaling during mouse retinal development. Development (2005) 1.33

Development of cortical maps: perspectives from the barrel cortex. Neuroscientist (2007) 1.31

Development of single retinofugal axon arbors in normal and β2 knock-out mice. J Neurosci (2011) 1.30

Visual map development depends on the temporal pattern of binocular activity in mice. Nat Neurosci (2011) 1.29

Physical and functional interaction between the dopamine transporter and the synaptic vesicle protein synaptogyrin-3. J Neurosci (2009) 1.22

Retinocollicular synapse maturation and plasticity are regulated by correlated retinal waves. J Neurosci (2008) 1.20

Characterization of a highly efficient blue-shifted channelrhodopsin from the marine alga Platymonas subcordiformis. J Biol Chem (2013) 1.19

SV2B regulates synaptotagmin 1 by direct interaction. J Biol Chem (2004) 1.17

Cortical adenylyl cyclase 1 is required for thalamocortical synapse maturation and aspects of layer IV barrel development. J Neurosci (2008) 1.11

Genetic evidence for a protein-kinase-A-mediated presynaptic component in NMDA-receptor-dependent forms of long-term synaptic potentiation. Proc Natl Acad Sci U S A (2005) 1.10

Role of efficient neurotransmitter release in barrel map development. J Neurosci (2006) 1.09

Differential distribution and developmental expression of synaptic vesicle protein 2 isoforms in the mouse retina. J Comp Neurol (2003) 1.09

SV2 acts via presynaptic calcium to regulate neurotransmitter release. Neuron (2010) 1.08

Barrel map development relies on protein kinase A regulatory subunit II beta-mediated cAMP signaling. J Neurosci (2006) 1.06

Bone morphogenetic proteins, eye patterning, and retinocollicular map formation in the mouse. J Neurosci (2008) 1.02

Pretarget sorting of retinocollicular axons in the mouse. J Comp Neurol (2005) 1.00

Nest building in nulligravid, primigravid and primiparous C57BL/6J and DBA/2J mice (Mus musculus). Physiol Behav (2002) 0.99

Syntaxin 3b is a t-SNARE specific for ribbon synapses of the retina. J Comp Neurol (2008) 0.98

Involvement of protein kinase A in patterning of the mouse somatosensory cortex. J Neurosci (2006) 0.97

SV2A and SV2C are not vesicular Ca2+ transporters but control glucose-evoked granule recruitment. J Cell Sci (2005) 0.96

Characterization of synaptogyrin 3 as a new synaptic vesicle protein. J Comp Neurol (2004) 0.95

Mechanisms of response homeostasis during retinocollicular map formation. J Physiol (2008) 0.92

Role of adenylate cyclase 1 in retinofugal map development. J Comp Neurol (2012) 0.90

How do barrels form in somatosensory cortex? Ann N Y Acad Sci (2011) 0.90

Adenylate Cyclase 1 dependent refinement of retinotopic maps in the mouse. Vision Res (2004) 0.87

Increased thalamocortical synaptic response and decreased layer IV innervation in GAP-43 knockout mice. J Neurophysiol (2007) 0.83

Competition driven by retinal waves promotes morphological and functional synaptic development of neurons in the superior colliculus. J Neurophysiol (2013) 0.81

Synapse maturation is enhanced in the binocular region of the retinocollicular map prior to eye opening. J Neurophysiol (2012) 0.80

Structural organization and function of mouse photoreceptor ribbon synapses involve the immunoglobulin protein synaptic cell adhesion molecule 1. J Comp Neurol (2014) 0.79

Visualization and manipulation of neural activity in the developing vertebrate nervous system. Front Mol Neurosci (2011) 0.78

Electroretinographic oscillatory potentials are reduced in adenylyl cyclase type I deficient mice. Vision Res (2002) 0.78

Transfection of mouse retinal ganglion cells by in vivo electroporation. J Vis Exp (2011) 0.78

Consequences of axon guidance defects on the development of retinotopic receptive fields in the mouse colliculus. J Physiol (2009) 0.78

FOS and FOSB expression in the medial preoptic nucleus pars compacta of maternally active C57BL/6J and DBA/2J mice. Brain Res (2002) 0.75