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PMID: 20157310 Published · ppublish English Journal Article Research Support, N.I.H., Intramural Research Support, Non-U.S. Gov't

A common variant of the latrophilin 3 gene, LPHN3, confers susceptibility to ADHD and predicts effectiveness of stimulant medication.

Molecular psychiatry ·Vol. 15 ·No. 11 ·2010-11-00 ·Pages 1053-66

Arcos-Burgos M, Jain M, Acosta MT, Shively S, Stanescu H, Wallis D, Domené S, Vélez JI, Karkera JD, Balog J, Berg K, Kleta R, Gahl WA, Roessler E, Long R, Lie J, Pineda D, Londoño AC, Palacio JD, Arbelaez A, Lopera F, Elia J, Hakonarson H, Johansson S, Knappskog PM, Haavik J, Ribases M, Cormand B, Bayes M, Casas M, Ramos-Quiroga JA, Hervas A, Maher BS, Faraone SV, Seitz C, Freitag CM, Palmason H, Meyer J, Romanos M, Walitza S, Hemminger U, Warnke A, Romanos J, Renner T, Jacob C, Lesch KP, Swanson J, Vortmeyer A, Bailey-Wilson JE, Castellanos FX, Muenke M

Abstract

Attention-Deficit/Hyperactivity Disorder (ADHD) has a very high heritability (0.8), suggesting that about 80% of phenotypic variance is due to genetic factors. We used the integration of statistical and functional approaches to discover a novel gene that contributes to ADHD. For our statistical approach, we started with a linkage study based on large multigenerational families in a population isolate, followed by fine mapping of targeted regions using a family-based design. Family- and population-based association studies in five samples from disparate regions of the world were used for replication. Brain imaging studies were performed to evaluate gene function. The linkage study discovered a genome region harbored in the Latrophilin 3 gene (LPHN3). In the world-wide samples (total n=6360, with 2627 ADHD cases and 2531 controls) statistical association of LPHN3 and ADHD was confirmed. Functional studies revealed that LPHN3 variants are expressed in key brain regions related to attention and activity, affect metabolism in neural circuits implicated in ADHD, and are associated with response to stimulant medication. Linkage and replicated association of ADHD with a novel non-candidate gene (LPHN3) provide new insights into the genetics, neurobiology, and treatment of ADHD.

MeSH Terms
Adolescent Adult Attention Deficit Disorder with Hyperactivity/drug therapy,genetics Brain/metabolism Cell Survival/genetics Central Nervous System Stimulants/therapeutic use Child Child, Preschool Chromosome Mapping Female Genetic Linkage Genetic Predisposition to Disease Genotype Humans Magnetic Resonance Spectroscopy/methods Male Polymorphism, Genetic Receptors, G-Protein-Coupled/genetics,metabolism Receptors, Peptide/genetics,metabolism
Chemicals
ADGRL3 protein, human Central Nervous System Stimulants Receptors, G-Protein-Coupled Receptors, Peptide
Authors & Affiliations
51 authors, click to expand affiliations / ORCID
Arcos-Burgos M
National Human Genome Research Institute, National Institutes of Health, 35 Convent Drive, Bethesda, MD 20892, USA.
Jain M
Acosta M T
Shively S
Stanescu H
Wallis D
Domené S
Vélez J I
Karkera J D
Balog J
Berg K
Kleta R
Gahl W A
Roessler E
Long R
Lie J
Pineda D
Londoño A C
Palacio J D
Arbelaez A
Lopera F
Elia J
Hakonarson H
Johansson S
Knappskog P M
Haavik J
Ribases M
Cormand B
Bayes M
Casas M
Ramos-Quiroga J A
Hervas A
Maher B S
Faraone S V
Seitz C
Freitag C M
Palmason H
Meyer J
Romanos M
Walitza S
Hemminger U
Warnke A
Romanos J
Renner T
Jacob C
Lesch K-P
Swanson J
Vortmeyer A
Bailey-Wilson J E
Castellanos F X
Muenke M
Article Info
Journal
Molecular psychiatry
Abbr.
Mol Psychiatry
ISSN
1476-5578
Published
2010-11-00
Epub
2010-00-16
Pages
1053-66
Language
English
Region
England
NLM ID
9607835
Subset
IM
Grants
Intramural NIH HHS · United States
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