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Published on: February 14, 2012
Simultaneous absence of dopamine D1 and D2 receptor-mediated signaling is lethal in mice
Minoru Kobayashi1, Ciro Iaccarino, Adolfo Saiardi
1Institut de Génétique et de Biologie Moléculaire et Cellulaire, 1 Rue Laurent Fries, 67404 Illkirch, France.
Abstract:
Dopamine (DA) controls a wide variety of physiological functions in the central nervous system as well as in the neuroendocrine and gastrointestinal systems. DA signaling is mediated by five cloned receptors named D1-D5. Knockout mouse models for the five receptors have been generated, and, albeit impaired for some important DA-mediated functions, they are viable and can reproduce. D1 and D2 receptors are the most abundant and widely expressed DA receptors. Cooperative/synergistic effects mediated by these receptors have been suggested, in particular, in the control of motor behaviors. To analyze the extent of such interrelationship, we have generated double D1/D2 receptor mutants. Interestingly, in contrast to single knockouts, we found that concurrent ablation of the D1 and D2 receptors is lethal during the second or third week after birth. This dramatic phenotype is likely to be related to altered feeding behavior and dysfunction of the gastrointestinal system, especially because major anatomical changes were not identified in the brain. Similarly, in the absence of functional D1, heterozygous D2 mutants (D1r(-/-);D2r(+/-)) showed severe growth retardation and did not survive their postweaning period. The analysis of motor behavior in D1r/D2r compound mutants showed that loss of D2-mediated functions reduces motor abilities, whereas the effect of D1r ablation on locomotion strongly depends on the experimental paradigms used. These studies highlight the interrelationship between D1 and D2 receptor-mediated control of motor activity, food intake, and gastrointestinal functions, which has been elusive in the single-gene ablation studies.
Insights
Concurrent ablation of dopamine D1 and D2 receptors is lethal in mice, impacting feeding and gastrointestinal functions. This highlights the critical interplay between these dopamine receptors for survival.
Area of Science:
- Neuroscience
- Genetics
- Physiology
Background:
- Dopamine (DA) regulates vital functions via five receptor subtypes (D1-D5).
- D1 and D2 receptors are widely expressed and implicated in motor control.
- Previous studies suggested cooperative effects between D1 and D2 receptors.
Purpose of the Study:
- To investigate the functional interrelationship between D1 and D2 dopamine receptors.
- To generate and analyze double D1/D2 receptor knockout mouse models.
Main Methods:
- Generation of double D1/D2 receptor knockout mice.
- Phenotypic analysis including survival, growth, motor behavior, and gastrointestinal function.
- Comparison with single knockout mouse models.
Main Results:
- Concurrent D1 and D2 receptor ablation resulted in lethality around the second to third week post-birth.
- Mutant mice exhibited altered feeding behavior and gastrointestinal dysfunction.
- Heterozygous D2 mutants lacking D1 receptors showed severe growth retardation and did not survive post-weaning.
- Motor behavior deficits were observed, with D2 receptor loss reducing motor abilities.
Conclusions:
- D1 and D2 dopamine receptors exhibit essential synergistic roles in controlling feeding, gastrointestinal function, and survival.
- The combined absence of D1 and D2 receptors leads to a lethal phenotype not observed in single knockouts.
- These findings elucidate previously elusive interdependencies between D1 and D2 receptor signaling pathways.

