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Neuroscience Letters|January 23, 1995
Characterisation of potential regulatory elements within the rat preprotachykinin-A promoterS C Mendelson, J P QuinnBrain Research. Molecular Brain Research|September 1, 1992
An NGF-inducible octamer binding protein activity in a C1300 neuroblastoma cell lineS C Mendelson, C Morrison, J P QuinnNeuropeptides|May 8, 1998
A role for the octamer-binding protein in preprotachykinin-A gene expressionS C Mendelson, C E Fiskerstrand, J P QuinnAutoimmunity|January 1, 1992
The nuclear autoimmune antigen Ku is also present on the cell surfaceR G Dalziel, S C Mendelson, J P QuinnThe Annals of Pharmacotherapy|August 6, 2000
Olanzapine-induced glucose dysregulationT L Bettinger, S C Mendelson, P G Dorson, et al.Canadian Journal of Physiology and Pharmacology|July 1, 1995
Transcriptional control of neuropeptide gene expression in sensory neurons, using the preprotachykinin-A gene as a modelJ P Quinn, S C Mendelson, J M Paterson, et al.The Biochemical Journal|September 1, 1995
An upstream stimulatory factor (USF) binding motif is critical for rat preprotachykinin-A promoter activity in PC12 cellsJ M Paterson, C F Morrison, S C Mendelson, et al.Neuroscience|June 1, 1995
Three immediate early gene response elements in the proximal preprotachykinin-A promoter in two functionally distinct domainsJ M Paterson, S C Mendelson, J McAllister, et al.Neuroscience|April 1, 1995
Repression of preprotachykinin-A promoter activity is mediated by a proximal promoter elementS C Mendelson, C F Morrison, J McAllister, et al.Pageof 1