David R. Colman

Affiliations: 
Montreal Neurological Institute, Montréal, Québec, Canada 
Area:
myelin, cadherin, synaptogenesis, neuroengineering
Website:
http://mni.mcgill.ca/neuro_team/cell_biology/coleman_david/
Google:
"David Colman"
Bio:

Penfield Professor and Director, Montreal Neurological Institute

Mean distance: 15.28 (cluster 11)
 
SNBCP
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Publications

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de Faria O, Dhaunchak AS, Kamen Y, et al. (2019) TMEM10 Promotes Oligodendrocyte Differentiation and is Expressed by Oligodendrocytes in Human Remyelinating Multiple Sclerosis Plaques. Scientific Reports. 9: 3606
Brady S, Colman DR, Brophy P. (2014) Subcellular Organization of the Nervous System: Organelles and Their Functions From Molecules to Networks: An Introduction to Cellular and Molecular Neuroscience: Third Edition. 23-52
Roth AD, Liazoghli D, Perez De Arce F, et al. (2013) Septin 7: actin cross-organization is required for axonal association of Schwann cells. Biological Research. 46: 243-9
Yam PT, Pincus Z, Gupta GD, et al. (2013) N-cadherin relocalizes from the periphery to the center of the synapse after transient synaptic stimulation in hippocampal neurons. Plos One. 8: e79679
Belkaid W, Thostrup P, Yam PT, et al. (2013) Cellular response to micropatterned growth promoting and inhibitory substrates. Bmc Biotechnology. 13: 86
Gopalakrishnan G, Awasthi A, Belkaid W, et al. (2013) Lipidome and proteome map of myelin membranes. Journal of Neuroscience Research. 91: 321-34
Suarez F, Thostrup P, Colman D, et al. (2013) Dynamics of presynaptic protein recruitment induced by local presentation of artificial adhesive contacts. Developmental Neurobiology. 73: 98-106
Yam PT, Kent CB, Morin S, et al. (2012) 14-3-3 proteins regulate a cell-intrinsic switch from sonic hedgehog-mediated commissural axon attraction to repulsion after midline crossing. Neuron. 76: 735-49
Maret D, Sadr MS, Sadr ES, et al. (2012) Opposite roles of furin and PC5A in N-cadherin processing. Neoplasia (New York, N.Y.). 14: 880-92
Magdesian MH, Sanchez FS, Lopez M, et al. (2012) Atomic force microscopy reveals important differences in axonal resistance to injury. Biophysical Journal. 103: 405-14
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