6533b863fe1ef96bd12c78a3
RESEARCH PRODUCT
Heterozygous deletion of the LRFN2 gene is associated with working memory deficits
Julien ThevenonCéline SouchayGail K SeaboldInna Dygai-cochetPatrick CallierSébastien GayLucie CorbinLaurence DuplombChristel Thauvin-robinetAlice Masurel-pauletSalima El ChehadehMagali AvilaDelphine MinotEric GuedjSophie ChancenotteMarlène BonnetDaphne LehalleYa-xian WangPaul KuentzFrédéric HuetAnne-laure Mosca-boidronNathalie MarleRonald S PetraliaLaurence Faivresubject
0301 basic medicineMaleCandidate genefamilyspeechHippocampal formationRats Sprague-Dawley0302 clinical medicineBorderline intellectual functioningNeuropsychological assessmentChilddisordersGenetics (clinical)Cells Culturedadhesion-like moleculesMembrane Glycoproteinsmedicine.diagnostic_testLearning DisabilitiesBrainMagnetic Resonance Imaging3. Good healthPedigreeMemory Short-TermBrain sizeFemaleAdultHeterozygotenmda receptorautismNerve Tissue ProteinsBiologyReceptors N-Methyl-D-AspartateArticle03 medical and health sciencesFluorodeoxyglucose F18[ SDV.MHEP ] Life Sciences [q-bio]/Human health and pathologyexpressionGeneticsmedicineAnimalsHumansMemory DisorderslanguageGenetic heterogeneityWorking memoryMembrane Proteinsdown-syndromeRats030104 developmental biologyEndophenotypePositron-Emission TomographySynapsesshort-termRadiopharmaceuticalsNeuroscience030217 neurology & neurosurgeryGene Deletion[SDV.MHEP]Life Sciences [q-bio]/Human health and pathologydescription
International audience; Learning disabilities (LDs) are a clinically and genetically heterogeneous group of diseases. Array-CGH and high-throughput sequencing have dramatically expanded the number of genes implicated in isolated intellectual disabilities and LDs, highlighting the implication of neuron-specific post-mitotic transcription factors and synaptic proteins as candidate genes. We report a unique family diagnosed with autosomal dominant learning disability and a 6p21 microdeletion segregating in three patients. The 870 kb microdeletion encompassed the brain-expressed gene LRFN2, which encodes for a synaptic cell adhesion molecule. Neuropsychological assessment identified selective working memory deficits, with borderline intellectual functioning. Further investigations identified a defect in executive function, and auditory-verbal processes. These data were consistent with brain MRI and FDG-PET functional brain imaging, which, when compared with controls, revealed abnormal brain volume and hypometabolism of gray matter structures implicated in working memory. We performed electron microscopy immunogold labeling demonstrating the localization of LRFN2 at synapses of cerebellar and hippocampal rat neurons, often associated with the NR1 subunit of N-methyl-D-aspartate receptors (NMDARs). Altogether, the combined approaches imply a role for LRFN2 in LD, specifically for working memory processes and executive function. In conclusion, the identification of familial cases of clinically homogeneous endophenotypes of LD might help in both the management of patients and genetic counseling for families.
year | journal | country | edition | language |
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2016-06-01 |