Publications
The multiple de novo copy number variant (MdnCNV) phenomenon presents with peri-zygotic DNA mutational signatures and multilocus pathogenic variation. Genome Med. 2022 ;14(1):122.
. Recurring germline mosaicism in a family due to reversion of an inherited derivative chromosome 8 from an 8;21 translocation with interstitial telomeric sequences. J Med Genet. 2022 ;.
. Retrospective analysis of a clinical exome sequencing cohort reveals the mutational spectrum and identifies candidate disease-associated loci for BAFopathies. Genet Med. 2022 ;24(2):364-373.
. Sequencing individual genomes with recurrent genomic disorder deletions: an approach to characterize genes for autosomal recessive rare disease traits. Genome Med. 2022 ;14(1):113.
. TCEAL1 loss-of-function results in an X-linked dominant neurodevelopmental syndrome and drives the neurological disease trait in Xq22.2 deletions. Am J Hum Genet. 2022 ;109(12):2270-2282.
. Clinical characterization of individuals with the distal 1q21.1 microdeletion. Am J Med Genet A. 2021 ;185(5):1388-1398.
. Contribution of uniparental disomy in a clinical trio exome cohort of 2675 patients. Mol Genet Genomic Med. 2021 ;9(11):e1792.
. RCL1 copy number variants are associated with a range of neuropsychiatric phenotypes. Mol Psychiatry. 2021 ;26(5):1706-1718.
. CNVs cause autosomal recessive genetic diseases with or without involvement of SNV/indels. Genet Med. 2020 ;22(10):1633-1641.
. Integrated sequencing and array comparative genomic hybridization in familial Parkinson disease. Neurol Genet. 2020 ;6(5):e498.
. Parental somatic mosaicism for CNV deletions - A need for more sensitive and precise detection methods in clinical diagnostics settings. Genomics. 2020 ;112(5):2937-2941.
. Quantitative Assessment of Parental Somatic Mosaicism for Copy-Number Variant (CNV) Deletions. Curr Protoc Hum Genet. 2020 ;106(1):e99.
. Atlas-CNV: a validated approach to call single-exon CNVs in the eMERGESeq gene panel. Genet Med. 2019 ;21(9):2135-2144.
. Bi-allelic Variants in TONSL Cause SPONASTRIME Dysplasia and a Spectrum of Skeletal Dysplasia Phenotypes. Am J Hum Genet. 2019 ;104(3):422-438.
. Clinical exome sequencing reveals locus heterogeneity and phenotypic variability of cohesinopathies. Genet Med. 2019 ;21(3):663-675.
. Copy number variant and runs of homozygosity detection by microarrays enabled more precise molecular diagnoses in 11,020 clinical exome cases. Genome Med. 2019 ;11(1):30.
. Correction to: De novo and inherited TCF20 pathogenic variants are associated with intellectual disability, dysmorphic features, hypotonia, and neurological impairments with similarities to Smith-Magenis syndrome. Genome Med. 2019 ;11(1):16.
. De novo and inherited TCF20 pathogenic variants are associated with intellectual disability, dysmorphic features, hypotonia, and neurological impairments with similarities to Smith-Magenis syndrome. Genome Med. 2019 ;11(1):12.
. Reanalysis of Clinical Exome Sequencing Data. N Engl J Med. 2019 ;380(25):2478-2480.
. Clinical exome sequencing for fetuses with ultrasound abnormalities and a suspected Mendelian disorder. Genome Med. 2018 ;10(1):74.
. Phenotypic expansion in - a common cause of intellectual disability in females. Ann Clin Transl Neurol. 2018 ;5(10):1277-1285.
. De Novo Disruption of the Proteasome Regulatory Subunit PSMD12 Causes a Syndromic Neurodevelopmental Disorder. Am J Hum Genet. 2017 ;100(2):352-363.
. Erratum to: Haploinsufficiency of the E3 ubiquitin-protein ligase gene TRIP12 causes intellectual disability with or without autism spectrum disorders, speech delay, and dysmorphic features. Hum Genet. 2017 ;136(8):1009-1011.
. Haploinsufficiency of the E3 ubiquitin-protein ligase gene TRIP12 causes intellectual disability with or without autism spectrum disorders, speech delay, and dysmorphic features. Hum Genet. 2017 ;136(4):377-386.
. Identification of novel candidate disease genes from de novo exonic copy number variants. Genome Med. 2017 ;9(1):83.
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