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Biochemistry|June 5, 1984
Catalytic mechanism of the dihydrofolate reductase reaction as determined by pH studiesS R Stone, J F MorrisonBiochemistry|February 26, 1985
Chorismate mutase-prephenate dehydrogenase from Escherichia coli: positive cooperativity with substrates and inhibitorsR I Christopherson, J F MorrisonBrain Research|August 13, 1986
Electrophysiological evidence for an excitatory projection from ventromedial forebrain structures on to raphe- and reticulo-spinal neurones in the ratB M Lumb, J F MorrisonJournal of Bacteriology|October 1, 1978
Role of the Escherichia coli aromatic amino acid aminotransferase in leucine biosynthesisJ T Powell, J F MorrisonBiochimica Et Biophysica Acta|June 29, 1983
The pH-dependence of the binding of dihydrofolate and substrate analogues to dihydrofolate reductase from Escherichia coliS R Stone, J F MorrisonBiochemistry|July 26, 1988
Dihydrofolate reductase from Escherichia coli: the kinetic mechanism with NADPH and reduced acetylpyridine adenine dinucleotide phosphate as substratesS R Stone, J F MorrisonBrain Research|August 30, 1991
Effects of visceral distension on the activities of neurones receiving cutaneous inputs in the rat lumbar dorsal horn; comparison with effects of remote noxious somatic stimuliS W Cadden, J F MorrisonArchives of Biochemistry and Biophysics|February 1, 1983
Synthesis and separation of tritium-labeled intermediates of the shikimate pathwayR I Christopherson, J F MorrisonBiochimica Et Biophysica Acta|June 29, 1983
The interaction of an ionizing ligand with enzymes having a single ionizing group. Implications for the reaction of folate analogues with dihydrofolate reductaseS R Stone, J F MorrisonBiochemistry|July 8, 1980
A kinetic method for determining dissociation constants for metal complexes of adenosine 5'-triphosphate and adenosine 5'-diphosphateJ F Morrison, W W ClelandPageof 19