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J L Salzer

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The Journal of Cell Biology|March 1, 1980
Studies of Schwann cell proliferation. I. An analysis in tissue culture of proliferation during development, Wallerian degeneration, and direct injuryJ L Salzer, R P Bunge
Journal of Neurochemistry|February 1, 1988
Chromosomal location of the mouse gene that encodes the myelin-associated glycoproteinsP D'Eustachio, D R Colman, J L Salzer
The Journal of Cell Biology|March 1, 1980
Studies of Schwann cell proliferation. III. Evidence for the surface localization of the neurite mitogenJ L Salzer, R P Bunge, L Glaser
The Journal of Cell Biology|May 1, 1992
Expression of unique sets of GPI-linked proteins by different primary neurons in vitroC L Rosen, M P Lisanti, J L Salzer
Journal of Neuroscience Research|April 15, 1995
Biosynthesis and regulation of expression of the HNK-1 epitope on myelin-associated glycoprotein in a transfected cell model systemL Pedraza, G Spagnol, N Latov, et al.
The Journal of Cell Biology|April 1, 1987
The amino acid sequences of the myelin-associated glycoproteins: homology to the immunoglobulin gene superfamilyJ L Salzer, W P Holmes, D R Colman
Brain Research|February 1, 1982
Axolemma-enriched fractions isolated from PNS and CNS are mitogenic for cultured Schwann cellsG H DeVries, J L Salzer, R P Bunge
The Journal of Cell Biology|December 1, 1993
Axonal regulation of Schwann cell integrin expression suggests a role for alpha 6 beta 4 in myelinationS Einheber, T A Milner, F Giancotti, et al.
Journal of Neurocytology|March 30, 2000
Clustering of neuronal sodium channels requires contact with myelinating Schwann cellsW Ching, G Zanazzi, S R Levinson, et al.
Journal of Neuroscience Research|October 27, 1998
Ran-2, a glial lineage marker, is a GPI-anchored form of ceruloplasminJ L Salzer, L Lovejoy, M C Linder, et al.
Pageof 5

Showing results (11-20 of 50) with videos related to

Sort By:
Pageof 5
The Journal of Cell Biology|March 1, 1980
Studies of Schwann cell proliferation. I. An analysis in tissue culture of proliferation during development, Wallerian degeneration, and direct injuryJ L Salzer, R P Bunge
Journal of Neurochemistry|February 1, 1988
Chromosomal location of the mouse gene that encodes the myelin-associated glycoproteinsP D'Eustachio, D R Colman, J L Salzer
The Journal of Cell Biology|March 1, 1980
Studies of Schwann cell proliferation. III. Evidence for the surface localization of the neurite mitogenJ L Salzer, R P Bunge, L Glaser
The Journal of Cell Biology|May 1, 1992
Expression of unique sets of GPI-linked proteins by different primary neurons in vitroC L Rosen, M P Lisanti, J L Salzer
Journal of Neuroscience Research|April 15, 1995
Biosynthesis and regulation of expression of the HNK-1 epitope on myelin-associated glycoprotein in a transfected cell model systemL Pedraza, G Spagnol, N Latov, et al.
The Journal of Cell Biology|April 1, 1987
The amino acid sequences of the myelin-associated glycoproteins: homology to the immunoglobulin gene superfamilyJ L Salzer, W P Holmes, D R Colman
Brain Research|February 1, 1982
Axolemma-enriched fractions isolated from PNS and CNS are mitogenic for cultured Schwann cellsG H DeVries, J L Salzer, R P Bunge
The Journal of Cell Biology|December 1, 1993
Axonal regulation of Schwann cell integrin expression suggests a role for alpha 6 beta 4 in myelinationS Einheber, T A Milner, F Giancotti, et al.
Journal of Neurocytology|March 30, 2000
Clustering of neuronal sodium channels requires contact with myelinating Schwann cellsW Ching, G Zanazzi, S R Levinson, et al.
Journal of Neuroscience Research|October 27, 1998
Ran-2, a glial lineage marker, is a GPI-anchored form of ceruloplasminJ L Salzer, L Lovejoy, M C Linder, et al.
Pageof 5