1993Clinical NeuropharmacologyRequires access

Dopamine D3 Receptor: Basic and Clinical Aspects

Jean‐Charles Schwartz, Daniel Lévesque, Marie‐Pascale Martres, Pierre Sokoloff

Open publisher page 120 citations

Abstract

The recently discovered dopamine D3 receptor can be considered as a D2-like receptor: it is encoded by a gene comprising several introns; it is both an autoreceptor and a postsynaptic receptor, well recognized by antipsychotics. It differs, however, from the D2 receptor by a much more discrete expression, mostly in few limbic brain areas, e.g. shell of nucleus accumbens, islands of Calleja, and a considerably higher affinity for dopamine. Two association studies preliminarily suggest that the homozygotes for a D3 receptor gene polymorphism display twofold higher risk of schizophrenia, whereas several linkage studies led to inconclusive results.

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What this paper is about

The recently discovered dopamine D3 receptor can be considered as a D2-like receptor: it is encoded by a gene comprising several introns; it is both an autoreceptor and a postsynaptic receptor, well recognized by antipsychotics. It differs, however, from the D2 receptor by a much more discrete expression, mostly in few limbic brain areas, e.g. shell of nucleus accumbens, islands of Calleja, and a considerably higher affinity for dopamine. Two association studies preliminarily suggest that the homozygotes for a D3 receptor gene polymorphism display twofold higher risk of schizophrenia, whereas several linkage studies led to inconclusive results.

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OpenAlex reports 120 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The recently discovered dopamine D3 receptor can be considered as a D2-like receptor: it is encoded by a gene comprising several introns; it is both an autoreceptor and a postsynaptic receptor, well recognized by antipsychotics. It differs, however, from the D2 receptor by a much more discrete expression, mostly in few limbic brain areas, e.g. shell of nucleus accumbens, islands of Calleja, and a considerably higher affinity for dopamine. Two association studies preliminarily suggest that the homozygotes for a D3 receptor gene polymorphism display twofold higher risk of schizophrenia, whereas several linkage studies led to inconclusive results.

Key concepts: Dopamine receptor D3, Dopamine receptor D2, Nucleus accumbens, Autoreceptor, Dopamine receptor D1, Dopamine receptor, Neuroscience, Dopamine

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