The dopamine D3 receptor (D3R) is a molecular target for both first-generation and several recently-developed antipsychotic agents. Following stable expression of this mEGFP-tagged receptor, Spatial Intensity Distribution Analysis indicated that a substantial proportion of the receptor was present within dimeric/oligomeric complexes and that increased expression levels of the receptor favored a greater dimer to monomer ratio. Addition of the antipsychotics, spiperone or haloperidol, resulted in re-organization of D3R quaternary structure to promote monomerization. This action was dependent on ligand concentration and reversed upon drug washout. By contrast, a number of other antagonists with high affinity at the D3R, did not alter the dimer...
The D1-like dopamine receptors have been implicated in the etiology of several neurological and psyc...
Evidence for heterodimerization has recently been provided for dopamine D(1) and adenosine A(1) rece...
By analyzing and simulating inactive conformations of the highly-homologous dopamine D2 and D3 recep...
The dopamine D3 receptor (D3R) is a molecular target for both first-generation and several recently-...
Background: The dopamine D receptor can form dimers/oligomers, but the molecular basis for this is p...
The dopamine D3 receptor is a class A, rhodopsinlike G protein-coupled receptor that can form dimers...
Dopamine D-2 receptors (D2R) are known to form transient homodimer complexes, of which the increased...
Local changes in the structure of G-protein coupled receptors (GPCR) binders largely affect their ph...
The brain's complexity derives not only from the way the intricate network of neurons is wired, but ...
The dopamine D3 receptor (D3R) has been implicated in substance abuse and other neuropsychiatric dis...
Dopamine D2 receptors (D2R) are known to form transient homodimer complexes, of which the increased ...
D3 receptors represent a major focus of current drug design and development of therapeutics for dopa...
The dopamine D3 receptor (D3R) is one of the most studied receptors involved in drug addiction. One ...
AbstractVarious pharmacological studies have implicated the dopamine D3 receptor as an interesting t...
Dopamine D2 and D3 receptors are important pharmacological targets in Schizophrenia and Parkinson’s ...
The D1-like dopamine receptors have been implicated in the etiology of several neurological and psyc...
Evidence for heterodimerization has recently been provided for dopamine D(1) and adenosine A(1) rece...
By analyzing and simulating inactive conformations of the highly-homologous dopamine D2 and D3 recep...
The dopamine D3 receptor (D3R) is a molecular target for both first-generation and several recently-...
Background: The dopamine D receptor can form dimers/oligomers, but the molecular basis for this is p...
The dopamine D3 receptor is a class A, rhodopsinlike G protein-coupled receptor that can form dimers...
Dopamine D-2 receptors (D2R) are known to form transient homodimer complexes, of which the increased...
Local changes in the structure of G-protein coupled receptors (GPCR) binders largely affect their ph...
The brain's complexity derives not only from the way the intricate network of neurons is wired, but ...
The dopamine D3 receptor (D3R) has been implicated in substance abuse and other neuropsychiatric dis...
Dopamine D2 receptors (D2R) are known to form transient homodimer complexes, of which the increased ...
D3 receptors represent a major focus of current drug design and development of therapeutics for dopa...
The dopamine D3 receptor (D3R) is one of the most studied receptors involved in drug addiction. One ...
AbstractVarious pharmacological studies have implicated the dopamine D3 receptor as an interesting t...
Dopamine D2 and D3 receptors are important pharmacological targets in Schizophrenia and Parkinson’s ...
The D1-like dopamine receptors have been implicated in the etiology of several neurological and psyc...
Evidence for heterodimerization has recently been provided for dopamine D(1) and adenosine A(1) rece...
By analyzing and simulating inactive conformations of the highly-homologous dopamine D2 and D3 recep...