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2.
Mol Hum Reprod ; 21(4): 339-46, 2015 Apr.
Article in English | MEDLINE | ID: mdl-25504873

ABSTRACT

Triploidy is a relatively common cause of miscarriage; however, recurrent triploidy has rarely been reported. A healthy 34-year-old woman was ascertained because of 18 consecutive miscarriages with triploidy found in all 5 karyotyped losses. Molecular results in a sixth loss were also consistent with triploidy. Genotyping of markers near the centromere on multiple chromosomes suggested that all six triploid conceptuses occurred as a result of failure to complete meiosis II (MII). The proband's mother had also experienced recurrent miscarriage, with a total of 18 miscarriages. Based on the hypothesis that an inherited autosomal-dominant maternal predisposition would explain the phenotype, whole-exome sequencing of the proband and her parents was undertaken to identify potential candidate variants. After filtering for quality and rarity, potentially damaging variants shared between the proband and her mother were identified in 47 genes. Variants in genes coding for proteins implicated in oocyte maturation, oocyte activation or polar body extrusion were then prioritized. Eight of the most promising candidate variants were confirmed by Sanger sequencing. These included a novel change in the PLCD4 gene, and a rare variant in the OSBPL5 gene, which have been implicated in oocyte activation upon fertilization and completion of MII. Several variants in genes coding proteins playing a role in oocyte maturation and early embryonic development were also identified. The genes identified may be candidates for the study in other women experiencing recurrent triploidy or recurrent IVF failure.


Subject(s)
Abortion, Habitual/genetics , Exome , Genetic Predisposition to Disease , Meiosis , Mutation , Triploidy , Abnormal Karyotype , Abortion, Habitual/diagnosis , Abortion, Habitual/pathology , Adult , Female , Gene Expression , Genotype , High-Throughput Nucleotide Sequencing , Humans , Pedigree , Phenotype , Phospholipase C delta/genetics , Pregnancy , Receptors, Steroid/genetics , Sequence Analysis, DNA
3.
Clin Genet ; 88(3): 224-33, 2015 Sep.
Article in English | MEDLINE | ID: mdl-25131214

ABSTRACT

Studies of genomic copy number variants (CNVs) have identified genes associated with autism spectrum disorder (ASD) and intellectual disability (ID) such as NRXN1, SHANK2, SHANK3 and PTCHD1. Deletions have been reported in PTCHD1 however there has been little information available regarding the clinical presentation of these individuals. Herein we present 23 individuals with PTCHD1 deletions or truncating mutations with detailed phenotypic descriptions. The results suggest that individuals with disruption of the PTCHD1 coding region may have subtle dysmorphic features including a long face, prominent forehead, puffy eyelids and a thin upper lip. They do not have a consistent pattern of associated congenital anomalies or growth abnormalities. They have mild to moderate global developmental delay, variable degrees of ID, and many have prominent behavioral issues. Over 40% of subjects have ASD or ASD-like behaviors. The only consistent neurological findings in our cohort are orofacial hypotonia and mild motor incoordination. Our findings suggest that hemizygous PTCHD1 loss of function causes an X-linked neurodevelopmental disorder with a strong propensity to autistic behaviors. Detailed neuropsychological studies are required to better define the cognitive and behavioral phenotype.


Subject(s)
Autism Spectrum Disorder/diagnosis , Autism Spectrum Disorder/genetics , Intellectual Disability/diagnosis , Intellectual Disability/genetics , Membrane Proteins/genetics , Mutation , Phenotype , Sequence Deletion , Adolescent , Adult , Child , Child, Preschool , Exons , Facies , Female , Humans , Infant , Male , Young Adult
4.
Clin Genet ; 86(3): 220-8, 2014 Sep.
Article in English | MEDLINE | ID: mdl-24128419

ABSTRACT

Gene discovery using massively parallel sequencing has focused on phenotypes diagnosed postnatally such as well-characterized syndromes or intellectual disability, but is rarely reported for fetal disorders. We used family-based whole-exome sequencing in order to identify causal variants for a recurrent pattern of an undescribed lethal fetal congenital anomaly syndrome. The clinical signs included intrauterine growth restriction (IUGR), severe microcephaly, renal cystic dysplasia/agenesis and complex brain and genitourinary malformations. The phenotype was compatible with a ciliopathy, but not diagnostic of any known condition. We hypothesized biallelic disruption of a gene leading to a defect related to the primary cilium. We identified novel autosomal recessive truncating mutations in KIF14 that segregated with the phenotype. Mice with autosomal recessive mutations in the same gene have recently been shown to have a strikingly similar phenotype. Genotype-phenotype correlations indicate that the function of KIF14 in cell division and cytokinesis can be linked to a role in primary cilia, supported by previous cellular and model organism studies of proteins that interact with KIF14. We describe the first human phenotype, a novel lethal ciliary disorder, associated with biallelic inactivating mutations in KIF14. KIF14 may also be considered a candidate gene for allelic viable ciliary and/or microcephaly phenotypes.


Subject(s)
Abnormalities, Multiple/genetics , Ciliary Motility Disorders/genetics , Genetic Predisposition to Disease/genetics , Kinesins/genetics , Oncogene Proteins/genetics , Phenotype , Abnormalities, Multiple/pathology , Base Sequence , Ciliary Motility Disorders/pathology , Exome/genetics , Genes, Recessive/genetics , High-Throughput Nucleotide Sequencing , Humans , Molecular Sequence Data , Mutation/genetics
5.
Clin Genet ; 79(1): 79-85, 2011 Jan.
Article in English | MEDLINE | ID: mdl-21091464

ABSTRACT

Submicroscopic chromosomal anomalies play an important role in the aetiology of intellectual disability (ID) and have been shown to account for up to 10% of non-syndromic forms. We present a family with two affected boys compatible with X-linked inheritance of a phenotype of severe neurodevelopmental disorder co-segregating with a deletion in Xp22.11 exclusively containing the PTCHD1 gene. Although the exact function of this gene is unknown to date, the structural overlap of its encoded patched domain-containing protein 1, the transmembrane protein involved in the sonic hedgehog pathway, and its expression in human cortex and cerebellum as well as in mice and drosophila brain suggests a causative role of its nullisomy in the developmental phenotype of our family. Our findings support the recent notions that PTCHD1 may play a role in X-linked intellectual disability (XLID) and autism disorders.


Subject(s)
Chromosomes, Human, X , Genes, X-Linked , Intellectual Disability , Receptors, Cell Surface/genetics , Autistic Disorder/genetics , Autistic Disorder/physiopathology , Child , Humans , Intellectual Disability/genetics , Intellectual Disability/physiopathology , Male , Patched Receptors , Pedigree , Phenotype , Sequence Deletion , Young Adult
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