Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Research Project (R01)
Project #
5R01NS031027-03
Application #
2269010
Study Section
Neurology B Subcommittee 2 (NEUB)
Project Start
1994-07-11
Project End
1998-05-31
Budget Start
1996-06-01
Budget End
1997-05-31
Support Year
3
Fiscal Year
1996
Total Cost
Indirect Cost
Name
Colorado State University-Fort Collins
Department
Anatomy/Cell Biology
Type
Schools of Veterinary Medicine
DUNS #
112617480
City
Fort Collins
State
CO
Country
United States
Zip Code
80523
Rash, John E; Vanderpool, Kimberly G; Yasumura, Thomas et al. (2016) KV1 channels identified in rodent myelinated axons, linked to Cx29 in innermost myelin: support for electrically active myelin in mammalian saltatory conduction. J Neurophysiol 115:1836-59
Rubio, M E; Nagy, J I (2015) Connexin36 expression in major centers of the auditory system in the CNS of mouse and rat: Evidence for neurons forming purely electrical synapses and morphologically mixed synapses. Neuroscience 303:604-29
Bautista, W; Rash, J E; Vanderpool, K G et al. (2014) Re-evaluation of connexins associated with motoneurons in rodent spinal cord, sexually dimorphic motor nuclei and trigeminal motor nucleus. Eur J Neurosci 39:757-70
Nagy, James Imre; Urena-Ramirez, Viridiana; Ghia, Jean-Eric (2014) Functional alterations in gut contractility after connexin36 ablation and evidence for gap junctions forming electrical synapses between nitrergic enteric neurons. FEBS Lett 588:1480-90
Bautista, W; McCrea, D A; Nagy, J I (2014) Connexin36 identified at morphologically mixed chemical/electrical synapses on trigeminal motoneurons and at primary afferent terminals on spinal cord neurons in adult mouse and rat. Neuroscience 263:159-80
Bautista, W; Nagy, J I (2014) Connexin36 in gap junctions forming electrical synapses between motoneurons in sexually dimorphic motor nuclei in spinal cord of rat and mouse. Eur J Neurosci 39:771-87
Nagy, J I; Bautista, W; Blakley, B et al. (2013) Morphologically mixed chemical-electrical synapses formed by primary afferents in rodent vestibular nuclei as revealed by immunofluorescence detection of connexin36 and vesicular glutamate transporter-1. Neuroscience 252:468-88
Bautista, Wendy; Nagy, James I; Dai, Yue et al. (2012) Requirement of neuronal connexin36 in pathways mediating presynaptic inhibition of primary afferents in functionally mature mouse spinal cord. J Physiol 590:3821-39
Li, X; Lynn, B D; Nagy, J I (2012) The effector and scaffolding proteins AF6 and MUPP1 interact with connexin36 and localize at gap junctions that form electrical synapses in rodent brain. Eur J Neurosci 35:166-81
Lynn, B D; Li, Xinbo; Nagy, J I (2012) Under construction: building the macromolecular superstructure and signaling components of an electrical synapse. J Membr Biol 245:303-17

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