The brain dopaminergic system is a critical modulator of basal ganglia function and plasticity. To investigate the contribution of the dopamine D1 receptor to this modulation, we have used gene targeting technology to generate D1 receptor mutant mice. Histological analyses suggested that there are no major changes in general anatomy of the mutant mouse brains, but indicated that the expression of dynorphin is greatly reduced in the striatum and related regions of the basal ganglia. The mutant mice do not respond to the stimulant and suppressive effects of D1 receptor agonists and antagonists, respectively, and they exhibit locomotor hyperactivity. These results suggest that the D1 receptor regulates the neurochemical architecture of the str...
†These authors contributed equally to this work. In the basal ganglia (BG), dopamine plays a pivotal...
Abstract—Within the D2-class of dopamine receptors, the D2 and D3 subtypes share the highest degree ...
grantor: University of TorontoDopamine is involved in the control of locomotor activity, ...
Of the five known dopamine receptors, D-1A and D-2 represent the major subtypes expressed in the str...
Stimulation of dopamine D1 receptors has profound effects on addictive behavior, movement control, a...
AbstractThe dopamine D3 receptor is expressed primarily in regions of the brain that are thought to ...
The brain mesoaccumbens dopamine system is intricately involved in the psychomotor stimulant activit...
Dopamine (DA) controls a wide variety of physiological functions in the central nervous system as we...
Dopamine (DA) controls a wide variety of physiological functions in the central nervous system as we...
Stimulation of dopamine (DA) receptors in the striatum is essential for voluntary motor activity and...
Stimulation of dopamine (DA) receptors in the striatum is essential for voluntary motor activity and...
Stimulation of dopamine (DA) receptors in the striatum is essential for voluntary motor activity and...
Stimulation of dopamine (DA) receptors in the striatum is essential for voluntary motor activity and...
Stimulation of dopamine (DA) receptors in the striatum is essential for voluntary motor activity and...
Stimulation of dopamine (DA) receptors in the striatum is essential for voluntary motor activity and...
†These authors contributed equally to this work. In the basal ganglia (BG), dopamine plays a pivotal...
Abstract—Within the D2-class of dopamine receptors, the D2 and D3 subtypes share the highest degree ...
grantor: University of TorontoDopamine is involved in the control of locomotor activity, ...
Of the five known dopamine receptors, D-1A and D-2 represent the major subtypes expressed in the str...
Stimulation of dopamine D1 receptors has profound effects on addictive behavior, movement control, a...
AbstractThe dopamine D3 receptor is expressed primarily in regions of the brain that are thought to ...
The brain mesoaccumbens dopamine system is intricately involved in the psychomotor stimulant activit...
Dopamine (DA) controls a wide variety of physiological functions in the central nervous system as we...
Dopamine (DA) controls a wide variety of physiological functions in the central nervous system as we...
Stimulation of dopamine (DA) receptors in the striatum is essential for voluntary motor activity and...
Stimulation of dopamine (DA) receptors in the striatum is essential for voluntary motor activity and...
Stimulation of dopamine (DA) receptors in the striatum is essential for voluntary motor activity and...
Stimulation of dopamine (DA) receptors in the striatum is essential for voluntary motor activity and...
Stimulation of dopamine (DA) receptors in the striatum is essential for voluntary motor activity and...
Stimulation of dopamine (DA) receptors in the striatum is essential for voluntary motor activity and...
†These authors contributed equally to this work. In the basal ganglia (BG), dopamine plays a pivotal...
Abstract—Within the D2-class of dopamine receptors, the D2 and D3 subtypes share the highest degree ...
grantor: University of TorontoDopamine is involved in the control of locomotor activity, ...