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1.
J Mol Diagn ; 22(8): 1041-1049, 2020 08.
Article in English | MEDLINE | ID: mdl-32497716

ABSTRACT

Overcoming challenges for the unambiguous detection of copy number variations is essential to broaden our understanding of the role of genomic variants in the clinical phenotype. With the improvement of software and databases, whole-exome sequencing quickly can become an excellent strategy in the routine diagnosis of patients with a developmental delay and/or multiple congenital malformations. However, even after a detailed analysis of pathogenic single-nucleotide variants and indels in known disease genes, using whole-exome sequencing, some patients with suspected syndromic conditions are left without a conclusive diagnosis. These negative results could be the result of different factors including nongenetic etiologies, lack of knowledge about the genes that cause different disease phenotypes, or, in some cases, a deletion or duplication of genomic information not routinely detectable by whole-exome sequencing variant calling. Although copy number variant detection is possible using whole-exome sequencing data, such analysis presents significant challenges and cannot yet be used to replace chromosomal arrays for identification of deletions or duplications.


Subject(s)
Abnormalities, Multiple/diagnosis , Abnormalities, Multiple/genetics , DNA Copy Number Variations , Developmental Disabilities/diagnosis , Developmental Disabilities/genetics , Exome Sequencing/methods , Polymorphism, Single Nucleotide , Abnormalities, Multiple/blood , Databases, Genetic , Developmental Disabilities/blood , Exome , Exons , Humans , INDEL Mutation , Phenotype , Software
2.
Eur J Med Genet ; 63(1): 103624, 2020 Jan.
Article in English | MEDLINE | ID: mdl-30690204

ABSTRACT

The Na+/K+- ATPase acts as an ion pump maintaining the essential plasma membrane potential in all mammalian cell types, and is essential for many cellular functions. There are four α isoforms (α1, α2, α3 and α4) with distinct expression patterns, kinetic properties and substrate affinity. The α2-isoform is encoded by ATP1A2 and evidence supports its utmost importance in Cl- homeostasis in neurons, and in the function of respiratory neurons at birth. Monallelic pathogenic variants in ATP1A2 are associated with familial hemiplegic migraine type 2 (FHM2) and on rare occasions with alternating hemiplegia of childhood 1 (AHC1). To date, no instances of biallelic loss of function variants have been reported in humans. However, Atp1a2 homozygous loss of function knockout mice (α2-/- mice) show severe motor deficits, with lack of spontaneous movements, and are perinatally lethal due to absent respiratory activity. In this report we describe three newborns from two unrelated families, who died neonatally, presenting in utero with an unusual form of fetal hydrops, seizures and polyhydramnios. At birth they had multiple joint contractures (e.g. arthrogryposis), microcephaly, malformations of cortical development, dysmorphic features and severe respiratory insufficiency. Biallelic loss of function variants in ATP1A2, predicted to be pathogenic were found on whole exome sequencing. We propose that this is a distinctive new syndrome caused by complete absence of Na+/K+- ATPase α2-isoform expression.


Subject(s)
Arthrogryposis/genetics , Hydrops Fetalis/genetics , Microcephaly/genetics , Migraine with Aura/genetics , Sodium-Potassium-Exchanging ATPase/genetics , Alleles , Animals , Arthrogryposis/pathology , Child , Female , Genetic Predisposition to Disease , Humans , Hydrops Fetalis/pathology , Infant, Newborn , Loss of Function Mutation/genetics , Male , Mice , Microcephaly/pathology , Migraine with Aura/pathology , Phenotype , Pregnancy , Protein Isoforms/genetics , Exome Sequencing
3.
Clin Case Rep ; 7(8): 1582-1584, 2019 Aug.
Article in English | MEDLINE | ID: mdl-31428396

ABSTRACT

Recognition of a de novo mutation in NR4A2 associated with a neurodevelopmental phenotype reinforces its role in 2q23q24 microdeletion syndrome. Using the proband WES data and the probability of loss-of-function intolerance index (pLi) set at 1.0 (highest intolerance constraint), we could target NR4A2 as the candidate gene in this patient.

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