The orphan receptor GPR88 controls impulsivity and is a risk factor for Attention-Deficit/Hyperactivity Disorder

被引:9
作者
Ben Hamida, Sami [1 ,2 ,7 ]
Sengupta, Sarojini M. [1 ,2 ,8 ]
Clarke, Ellie [1 ,2 ]
McNicholas, Michael [1 ,2 ]
Moroncini, Eleonora [1 ,2 ]
Darcq, Emmanuel [1 ,2 ,9 ]
Ter-Stepanian, Marina [3 ,4 ]
Fortier, Marie-Eve [1 ]
Grizenko, Natalie [1 ,2 ]
Joober, Ridha [1 ,2 ,5 ,6 ]
Kieffer, Brigitte L. [1 ,2 ,9 ]
机构
[1] Douglas Mental Hlth Univ Inst, Montreal, PQ, Canada
[2] McGill Univ, Dept Psychiat, Montreal, PQ, Canada
[3] McGill Univ Montreal, Dept Educ & Counselling Psychol, Montreal, PQ, Canada
[4] Univ Sherbrooke, Dept Psychoeduc, Sherbrooke, PQ, Canada
[5] McGill Univ, Dept Human Genet, Montreal, PQ, Canada
[6] McGill Univ, Dept Neurol & Neurosurg, Montreal, PQ, Canada
[7] Univ Picardie Jules Verne, INSERM, UMR 1247, Res Grp Alcohol & Pharmacodependences GRAP, Amiens, France
[8] AIMH Artificial Intelligence Mental Hlth Inc, Montreal, PQ, Canada
[9] Univ Strasbourg, Dept Psychiat, INSERM, U1114, Strasbourg, France
基金
加拿大健康研究院;
关键词
DEFICIT HYPERACTIVITY DISORDER; REACTION-TIME-TASK; ANIMAL-MODELS; FRONTAL-LOBE; MICE LACKING; RELIABILITY; ADHD; GENETICS; AGONISTS; DESIGN;
D O I
10.1038/s41380-022-01738-w
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Mutant mouse behavior and human genetic data concur to suggest that the orphan receptor GPR88 contributes to Attention-Deficit/Hyperactivity Disorder. The neural orphan G protein coupled receptor GPR88 is predominant in the striatum and cortex of both rodents and humans, and considered a potential target for brain disorders. Previous studies have shown multiple behavioral phenotypes in Gpr88 knockout mice, and human genetic studies have reported association with psychosis. Here we tested the possibility that GPR88 contributes to Attention Deficit Hyperactivity Disorder (ADHD). In the mouse, we tested Gpr88 knockout mice in three behavioral paradigms, best translatable between rodents and humans, and found higher motor impulsivity and reduced attention together with the reported hyperactivity. Atomoxetine, a typical ADHD drug, reduced impulsivity in mutant mice. Conditional Gpr88 knockout mice in either D1R-type or D2R-type medium spiny neurons revealed distinct implications of the two receptor populations in waiting and stopping impulsivity. Thus, animal data demonstrate that deficient GPR88 activity causally promotes ADHD-like behaviors, and identify circuit mechanisms underlying GPR88-regulated impulsivity. In humans, we performed a family-based genetic study including 567 nuclear families with DSM-IV diagnosis of ADHD. There was a minor association for SNP rs2036212 with diagnosis, treatment response and cognition. A stronger association was found for SNP rs2809817 upon patient stratification, suggesting that the T allele is a risk factor when prenatal stress is involved. Human data therefore identify GPR88 variants associated with the disease, and highlight a potential role of life trajectories to modulate GPR88 function. Overall, animal and human data concur to suggest that GPR88 signaling should be considered a key factor for diagnostic and treatment of ADHD.
引用
收藏
页码:4662 / 4672
页数:11
相关论文
共 72 条
[1]  
Achenbach T. M., 1991, MANUAL CHILD BEHAV C
[2]   Deleterious mutation in GPR88 is associated with chorea, speech delay, and learning disabilities [J].
Alkufri, Fadi ;
Shaag, Avraham ;
Abu-Libdeh, Bassam ;
Elpeleg, Orly .
NEUROLOGY-GENETICS, 2016, 2 (03)
[3]   Remodeling of Sensorimotor Brain Connectivity in Gpr88-Deficient Mice [J].
Arefin, Tanzil Mahmud ;
Mechling, Anna E. ;
Meirsman, Aura Carole ;
Bienert, Thomas ;
Huebner, Neele Saskia ;
Lee, Hsu-Lei ;
Ben Hamida, Sami ;
Ehrlich, Aliza ;
Roquet, Dan ;
Hennig, Juergen ;
von Elverfeldt, Dominik ;
Kieffer, Brigitte Lina ;
Harsan, Laura-Adela .
BRAIN CONNECTIVITY, 2017, 7 (08) :526-540
[4]  
Bari A, 2011, CURR TOP BEHAV NEURO, V7, P149, DOI 10.1007/7854_2010_102
[5]  
Barkley Russell A, 2004, J Psychiatr Pract, V10, P39, DOI 10.1097/00131746-200401000-00005
[6]   Ventral Striatal D2/3 Receptor Availability Is Associated with Impulsive Choice Behavior As Well As Limbic Corticostriatal Connectivity [J].
Barlow, Rebecca L. ;
Gorges, Martin ;
Wearn, Alfie ;
Niessen, Heiko G. ;
Kassubek, Jan ;
Dalley, Jeffrey W. ;
Pekcec, Anton .
INTERNATIONAL JOURNAL OF NEUROPSYCHOPHARMACOLOGY, 2018, 21 (07) :705-715
[7]   Increased Alcohol Seeking in Mice Lacking Gpr88 Involves Dysfunctional Mesocorticolimbic Networks [J].
Ben Hamida, Sami ;
Mendonca-Netto, Sueli ;
Arefin, Tanzil Mahmud ;
Nasseef, Md. Taufiq ;
Boulos, Laura-Joy ;
McNicholas, Michael ;
Ehrlich, Aliza Toby ;
Clarke, Eleanor ;
Moquin, Luc ;
Gratton, Alain ;
Darcq, Emmanuel ;
Harsan, Laura Adela ;
Maldonado, Rafael ;
Kieffer, Brigitte Lina .
BIOLOGICAL PSYCHIATRY, 2018, 84 (03) :202-212
[8]   Parental rejection in early adolescence predicts a persistent ADHD symptom trajectory across adolescence [J].
Brinksma, Djuke M. ;
Hoekstra, Pieter J. ;
de Bildt, Annelies ;
Buitelaar, Jan K. ;
van den Hoofdakker, Barbara J. ;
Hartman, Catharina A. ;
Dietrich, Andrea .
EUROPEAN CHILD & ADOLESCENT PSYCHIATRY, 2023, 32 (01) :139-153
[9]   Abnormal latent inhibition and impulsivity in coloboma mice, a model of ADHD [J].
Bruno, Kristy J. ;
Freet, Christopher S. ;
Twining, Robert C. ;
Egami, Kiyoshi ;
Grigson, Patricia S. ;
Hess, Ellen J. .
NEUROBIOLOGY OF DISEASE, 2007, 25 (01) :206-216
[10]   Maternal antenatal depression and child mental health: Moderation by genomic risk for attention-deficit/hyperactivity disorder [J].
Chen, Lawrence M. ;
Tollenaar, Marieke S. ;
Hari Dass, Shantala A. ;
Bouvette-Turcot, Andree-Anne ;
Pokhvisneva, Irina ;
Gaudreau, Helene ;
Parent, Carine ;
Diorio, Josie ;
McEwen, Lisa M. ;
MacIsaac, Julia L. ;
Kobor, Michael S. ;
Beijers, Roseriet ;
de Weerth, Carolina ;
Silveira, Patricia P. ;
Karama, Sherif ;
Meaney, Michael J. ;
O'Donnell, Kieran J. .
DEVELOPMENT AND PSYCHOPATHOLOGY, 2020, 32 (05) :1810-1821