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Rare single‐nucleotide variants in oculo‐auriculo‐vertebral spectrum (OAVS)
by
Alvarez Perez, Ana B.
, Bragagnolo, Silvia
, Melaragno, Maria Isabel
, Moysés‐Oliveira, Mariana
, Nunes, Natália
, Zamariolli, Malú
, Caires dos Santos, Leonardo
, Colovati, Mileny
in
Abnormalities
/ Adaptor Proteins, Signal Transducing - genetics
/ Adolescent
/ Algorithms
/ Anomalies
/ Arches
/ Binding sites
/ candidate genes
/ Child
/ Child, Preschool
/ Chromosome aberrations
/ Developmental disabilities
/ Developmental Disabilities - genetics
/ Developmental Disabilities - pathology
/ Etiology
/ Experiments
/ Female
/ Gene expression
/ Genes
/ Genetic factors
/ Genomes
/ Heritability
/ Heterogeneity
/ Humans
/ Infant
/ Male
/ Mandible
/ Mutation
/ Nuclear Proteins - genetics
/ Nucleotides
/ oculo‐auriculo‐vertebral spectrum (OAVS)
/ Original
/ Otx Transcription Factors - genetics
/ Otx2 protein
/ Pathogenicity
/ Pathogens
/ Patients
/ Pharynx
/ Phenotypes
/ Polymorphism, Single Nucleotide
/ sequencing
/ SNVs
/ Software
/ Stem cells
/ Untranslated Regions
/ Vertebrae
/ Y chromosomes
2019
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Rare single‐nucleotide variants in oculo‐auriculo‐vertebral spectrum (OAVS)
by
Alvarez Perez, Ana B.
, Bragagnolo, Silvia
, Melaragno, Maria Isabel
, Moysés‐Oliveira, Mariana
, Nunes, Natália
, Zamariolli, Malú
, Caires dos Santos, Leonardo
, Colovati, Mileny
in
Abnormalities
/ Adaptor Proteins, Signal Transducing - genetics
/ Adolescent
/ Algorithms
/ Anomalies
/ Arches
/ Binding sites
/ candidate genes
/ Child
/ Child, Preschool
/ Chromosome aberrations
/ Developmental disabilities
/ Developmental Disabilities - genetics
/ Developmental Disabilities - pathology
/ Etiology
/ Experiments
/ Female
/ Gene expression
/ Genes
/ Genetic factors
/ Genomes
/ Heritability
/ Heterogeneity
/ Humans
/ Infant
/ Male
/ Mandible
/ Mutation
/ Nuclear Proteins - genetics
/ Nucleotides
/ oculo‐auriculo‐vertebral spectrum (OAVS)
/ Original
/ Otx Transcription Factors - genetics
/ Otx2 protein
/ Pathogenicity
/ Pathogens
/ Patients
/ Pharynx
/ Phenotypes
/ Polymorphism, Single Nucleotide
/ sequencing
/ SNVs
/ Software
/ Stem cells
/ Untranslated Regions
/ Vertebrae
/ Y chromosomes
2019
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Rare single‐nucleotide variants in oculo‐auriculo‐vertebral spectrum (OAVS)
by
Alvarez Perez, Ana B.
, Bragagnolo, Silvia
, Melaragno, Maria Isabel
, Moysés‐Oliveira, Mariana
, Nunes, Natália
, Zamariolli, Malú
, Caires dos Santos, Leonardo
, Colovati, Mileny
in
Abnormalities
/ Adaptor Proteins, Signal Transducing - genetics
/ Adolescent
/ Algorithms
/ Anomalies
/ Arches
/ Binding sites
/ candidate genes
/ Child
/ Child, Preschool
/ Chromosome aberrations
/ Developmental disabilities
/ Developmental Disabilities - genetics
/ Developmental Disabilities - pathology
/ Etiology
/ Experiments
/ Female
/ Gene expression
/ Genes
/ Genetic factors
/ Genomes
/ Heritability
/ Heterogeneity
/ Humans
/ Infant
/ Male
/ Mandible
/ Mutation
/ Nuclear Proteins - genetics
/ Nucleotides
/ oculo‐auriculo‐vertebral spectrum (OAVS)
/ Original
/ Otx Transcription Factors - genetics
/ Otx2 protein
/ Pathogenicity
/ Pathogens
/ Patients
/ Pharynx
/ Phenotypes
/ Polymorphism, Single Nucleotide
/ sequencing
/ SNVs
/ Software
/ Stem cells
/ Untranslated Regions
/ Vertebrae
/ Y chromosomes
2019
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Rare single‐nucleotide variants in oculo‐auriculo‐vertebral spectrum (OAVS)
Journal Article
Rare single‐nucleotide variants in oculo‐auriculo‐vertebral spectrum (OAVS)
2019
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Overview
Background Oculo‐auriculo‐vertebral spectrum (OAVS) is a craniofacial developmental disorder that affects structures derived from the first and second pharyngeal arches. The clinically heterogeneous phenotype involves mandibular, oral, and ear development anomalies. Etiology is complex and poorly understood. Genetic factors have been associated, evidenced by chromosomal abnormalities affecting different genomic regions and genes. However, known pathogenic single‐nucleotide variants (SNVs) have only been identified in MYT1 in a restricted number of patients. Therefore, investigations of SNVs on candidate genes may reveal other pathogenic mechanisms. Methods In a cohort of 73 patients, coding and untranslated regions (UTR) of 10 candidate genes (CRKL, YPEL1, MAPK1, NKX3‐2, HMX1, MYT1, OTX2, GSC, PUF60, HOXA2) were sequenced. Rare SNVs were selected and in silico predictions were performed to ascertain pathogenicity. Likely pathogenic variants were validated by Sanger sequencing and heritability was assessed when possible. Results Four likely pathogenic variants in heterozygous state were identified in different patients. Two SNVs were located in the 5’UTR of YPEL1; one in the 3’UTR of CRKL and one in the 3’UTR of OTX2. Conclusion Our work described variants in candidate genes for OAVS and supported the genetic heterogeneity of the spectrum. Coding and UTR of 10 candidate genes to the oculo‐auriculo‐vertebral spectrum were sequenced. Four rare SNVs, in four different patients, were considered as likely pathogenic. These findings support the genetic heterogeneity of the spectrum.
Publisher
John Wiley & Sons, Inc,John Wiley and Sons Inc,Wiley
Subject
/ Adaptor Proteins, Signal Transducing - genetics
/ Arches
/ Child
/ Developmental Disabilities - genetics
/ Developmental Disabilities - pathology
/ Etiology
/ Female
/ Genes
/ Genomes
/ Humans
/ Infant
/ Male
/ Mandible
/ Mutation
/ oculo‐auriculo‐vertebral spectrum (OAVS)
/ Original
/ Otx Transcription Factors - genetics
/ Patients
/ Pharynx
/ Polymorphism, Single Nucleotide
/ SNVs
/ Software
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