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Research in Developmental Disabilities|February 27, 2021
Sensory modulation and negative affect in children at familial risk of ADHDJ Keating, J Bramham, M DownesBiochemistry|February 11, 1992
Mechanism of C-3 hydrogen exchange and the elimination of ammonia in the 3-methylaspartate ammonia-lyase reactionN P Botting, D GaniJournal of Neurochemistry|September 1, 1988
Dopamine receptor stimulation does not affect phosphoinositide hydrolysis in slices of rat striatumE Kelly, I Batty, S R NahorskiThe Biochemical Journal|May 23, 1998
Evidence for a model of integrated inositol phospholipid pools implies an essential role for lipid transport in the maintenance of receptor-mediated phospholipase C activity in 1321N1 cellsI H Batty, R A Currie, C P DownesJournal of Neurochemistry|August 1, 1994
Involvement of calcium influx in muscarinic cholinergic regulation of phospholipase C in cerebellar granule cellsE del Río, D G Nicholls, C P DownesBritish Journal of Pharmacology|May 1, 1986
A comparison of the binding of sigma opioids and phencyclidine, and the interaction with antipsychotic drugs in rat brain membranesC P Downes, P E Lewis, M A StoneThe Biochemical Journal|November 22, 2001
TPIP: a novel phosphoinositide 3-phosphataseS M Walker, C P Downes, N R LeslieThe Biochemical Journal|September 15, 1989
An analysis of myo-[3H]inositol trisphosphates found in myo-[3H]inositol prelabelled avian erythrocytesL R Stephens, P T Hawkins, C P DownesThe Journal of Biological Chemistry|January 15, 1989
Kinetics of activation of phospholipase C by P2Y purinergic receptor agonists and guanine nucleotidesJ L Boyer, C P Downes, T K HardenJournal of Neurochemistry|February 1, 1996
Characterization of the effects of lithium and inositol on phosphoinositide turnover in cerebellar granule cells in primary cultureE del Río, D G Nicholls, C P DownesPageof 19