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PMID: 21827697 Published · epublish English Journal Article Research Support, Non-U.S. Gov't

Expanding the clinical spectrum associated with defects in CNTNAP2 and NRXN1.

BMC medical genetics ·Vol. 12 ·2011-08-09 ·Pages 106

Gregor A, Albrecht B, Bader I, Bijlsma EK, Ekici AB, Engels H, Hackmann K, Horn D, Hoyer J, Klapecki J, Kohlhase J, Maystadt I, Nagl S, Prott E, Tinschert S, Ullmann R, Wohlleber E, Woods G, Reis A, Rauch A, Zweier C

Abstract

Heterozygous copy-number and missense variants in CNTNAP2 and NRXN1 have repeatedly been associated with a wide spectrum of neuropsychiatric disorders such as developmental language and autism spectrum disorders, epilepsy and schizophrenia. Recently, homozygous or compound heterozygous defects in either gene were reported as causative for severe intellectual disability. 99 patients with severe intellectual disability and resemblance to Pitt-Hopkins syndrome and/or suspected recessive inheritance were screened for mutations in CNTNAP2 and NRXN1. Molecular karyotyping was performed in 45 patients. In 8 further patients with variable intellectual disability and heterozygous deletions in either CNTNAP2 or NRXN1, the remaining allele was sequenced. By molecular karyotyping and mutational screening of CNTNAP2 and NRXN1 in a group of severely intellectually disabled patients we identified a heterozygous deletion in NRXN1 in one patient and heterozygous splice-site, frameshift and stop mutations in CNTNAP2 in four patients, respectively. Neither in these patients nor in eight further patients with heterozygous deletions within NRXN1 or CNTNAP2 we could identify a defect on the second allele. One deletion in NRXN1 and one deletion in CNTNAP2 occurred de novo, in another family the deletion was also identified in the mother who had learning difficulties, and in all other tested families one parent was shown to be healthy carrier of the respective deletion or mutation. We report on patients with heterozygous defects in CNTNAP2 or NRXN1 associated with severe intellectual disability, which has only been reported for recessive defects before. These results expand the spectrum of phenotypic severity in patients with heterozygous defects in either gene. The large variability between severely affected patients and mildly affected or asymptomatic carrier parents might suggest the presence of a second hit, not necessarily located in the same gene.

MeSH Terms
Adolescent Alleles Calcium-Binding Proteins Cell Adhesion Molecules, Neuronal/genetics Child Child Development Disorders, Pervasive/genetics Child, Preschool Codon, Terminator Facies Female Frameshift Mutation Gene Deletion Heterozygote Humans Hyperventilation/genetics Intellectual Disability/genetics Karyotyping Male Membrane Proteins/genetics Nerve Tissue Proteins/genetics Neural Cell Adhesion Molecules RNA Splice Sites Young Adult
Chemicals
CNTNAP2 protein, human Calcium-Binding Proteins Cell Adhesion Molecules, Neuronal Codon, Terminator Membrane Proteins NRXN1 protein, human Nerve Tissue Proteins Neural Cell Adhesion Molecules RNA Splice Sites
Authors & Affiliations
21 authors, click to expand affiliations / ORCID
Gregor Anne
Institute of Human Genetics, Friedrich-Alexander-University Erlangen-Nuremberg, Erlangen, Germany.
Albrecht Beate
Bader Ingrid
Bijlsma Emilia K
Ekici Arif B
Engels Hartmut
Hackmann Karl
Horn Denise
Hoyer Juliane
Klapecki Jakub
Kohlhase Jürgen
Maystadt Isabelle
Nagl Sandra
Prott Eva
Tinschert Sigrid
Ullmann Reinhard
Wohlleber Eva
Woods Geoffrey
Reis André
Rauch Anita
Zweier Christiane
Supplementary Concepts
Pitt-Hopkins syndrome (Disease)
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33 references, click to expand
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Article Info
Journal
BMC medical genetics
Abbr.
BMC Med Genet
ISSN
1471-2350
Published
2011-08-09
Epub
2011-00-09
Pages
106
Language
English
Region
England
NLM ID
100968552
PMCID
PMC3162517
Subset
IM
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