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Identification of novel candidate disease genes from de novo exonic copy number variants. Genome Med 9, 83 (2017).
Identification of novel candidate disease genes from de novo exonic copy number variants. Genome Med 9, 83 (2017).
Improving genetic diagnosis in Mendelian disease with transcriptome sequencing. Sci Transl Med 9, (2017).
Improving genetic diagnosis in Mendelian disease with transcriptome sequencing. Sci Transl Med 9, (2017).
Improving genetic diagnosis in Mendelian disease with transcriptome sequencing. Sci Transl Med 9, (2017).
Improving genetic diagnosis in Mendelian disease with transcriptome sequencing. Sci Transl Med 9, (2017).
Improving genetic diagnosis in Mendelian disease with transcriptome sequencing. Sci Transl Med 9, (2017).
International Cooperation to Enable the Diagnosis of All Rare Genetic Diseases. Am J Hum Genet 100, 695-705 (2017).
International Cooperation to Enable the Diagnosis of All Rare Genetic Diseases. Am J Hum Genet 100, 695-705 (2017).
International Cooperation to Enable the Diagnosis of All Rare Genetic Diseases. Am J Hum Genet 100, 695-705 (2017).
International Cooperation to Enable the Diagnosis of All Rare Genetic Diseases. Am J Hum Genet 100, 695-705 (2017).
International Cooperation to Enable the Diagnosis of All Rare Genetic Diseases. Am J Hum Genet 100, 695-705 (2017).
International Cooperation to Enable the Diagnosis of All Rare Genetic Diseases. Am J Hum Genet 100, 695-705 (2017).
Isolated polycystic liver disease genes define effectors of polycystin-1 function. J Clin Invest 127, 1772-1785 (2017).
Kaufman oculo-cerebro-facial syndrome in a child with small and absent terminal phalanges and absent nails. J Hum Genet 62, 465-471 (2017).
Lessons learned from additional research analyses of unsolved clinical exome cases. Genome Med 9, 26 (2017).
Lessons learned from additional research analyses of unsolved clinical exome cases. Genome Med 9, 26 (2017).
Lessons learned from additional research analyses of unsolved clinical exome cases. Genome Med 9, 26 (2017).
Lessons learned from additional research analyses of unsolved clinical exome cases. Genome Med 9, 26 (2017).
Lessons learned from additional research analyses of unsolved clinical exome cases. Genome Med 9, 26 (2017).
Loss of Nardilysin, a Mitochondrial Co-chaperone for α-Ketoglutarate Dehydrogenase, Promotes mTORC1 Activation and Neurodegeneration. Neuron 93, 115-131 (2017).
Loss-of-Function Mutations in YY1AP1 Lead to Grange Syndrome and a Fibromuscular Dysplasia-Like Vascular Disease. Am J Hum Genet 100, 21-30 (2017).
Loss-of-Function Mutations in YY1AP1 Lead to Grange Syndrome and a Fibromuscular Dysplasia-Like Vascular Disease. Am J Hum Genet 100, 21-30 (2017).
Loss-of-Function Variants in MYLK Cause Recessive Megacystis Microcolon Intestinal Hypoperistalsis Syndrome. Am J Hum Genet 101, 123-129 (2017).
Loss-of-Function Variants in MYLK Cause Recessive Megacystis Microcolon Intestinal Hypoperistalsis Syndrome. Am J Hum Genet 101, 123-129 (2017).
Loss-of-Function Variants in MYLK Cause Recessive Megacystis Microcolon Intestinal Hypoperistalsis Syndrome. Am J Hum Genet 101, 123-129 (2017).
Loss-of-Function Variants in MYLK Cause Recessive Megacystis Microcolon Intestinal Hypoperistalsis Syndrome. Am J Hum Genet 101, 123-129 (2017).
"Matching" consent to purpose: The example of the Matchmaker Exchange. Hum Mutat 38, 1281-1285 (2017).
"Matching" consent to purpose: The example of the Matchmaker Exchange. Hum Mutat 38, 1281-1285 (2017).
MED resulting from recessively inherited mutations in the gene encoding calcium-activated nucleotidase CANT1. Am J Med Genet A 173, 2415-2421 (2017).
MED resulting from recessively inherited mutations in the gene encoding calcium-activated nucleotidase CANT1. Am J Med Genet A 173, 2415-2421 (2017).
Multilevel analyses of SCN5A mutations in arrhythmogenic right ventricular dysplasia/cardiomyopathy suggest non-canonical mechanisms for disease pathogenesis. Cardiovasc Res 113, 102-111 (2017).
Multilevel analyses of SCN5A mutations in arrhythmogenic right ventricular dysplasia/cardiomyopathy suggest non-canonical mechanisms for disease pathogenesis. Cardiovasc Res 113, 102-111 (2017).
Multilevel analyses of SCN5A mutations in arrhythmogenic right ventricular dysplasia/cardiomyopathy suggest non-canonical mechanisms for disease pathogenesis. Cardiovasc Res 113, 102-111 (2017).
Mutations in ARMC9, which Encodes a Basal Body Protein, Cause Joubert Syndrome in Humans and Ciliopathy Phenotypes in Zebrafish. Am J Hum Genet 101, 23-36 (2017).
Mutations in ARMC9, which Encodes a Basal Body Protein, Cause Joubert Syndrome in Humans and Ciliopathy Phenotypes in Zebrafish. Am J Hum Genet 101, 23-36 (2017).
Mutations in ARMC9, which Encodes a Basal Body Protein, Cause Joubert Syndrome in Humans and Ciliopathy Phenotypes in Zebrafish. Am J Hum Genet 101, 23-36 (2017).
Mutations in DYNC2H1, the cytoplasmic dynein 2, heavy chain 1 motor protein gene, cause short-rib polydactyly type I, Saldino-Noonan type. Clin Genet 92, 158-165 (2017).
Mutations in DYNC2H1, the cytoplasmic dynein 2, heavy chain 1 motor protein gene, cause short-rib polydactyly type I, Saldino-Noonan type. Clin Genet 92, 158-165 (2017).
Mutations in EBF3 Disturb Transcriptional Profiles and Cause Intellectual Disability, Ataxia, and Facial Dysmorphism. Am J Hum Genet 100, 117-127 (2017).
Mutations in EBF3 Disturb Transcriptional Profiles and Cause Intellectual Disability, Ataxia, and Facial Dysmorphism. Am J Hum Genet 100, 117-127 (2017).
Mutations in EBF3 Disturb Transcriptional Profiles and Cause Intellectual Disability, Ataxia, and Facial Dysmorphism. Am J Hum Genet 100, 117-127 (2017).
Mutations in EBF3 Disturb Transcriptional Profiles and Cause Intellectual Disability, Ataxia, and Facial Dysmorphism. Am J Hum Genet 100, 117-127 (2017).
Mutations in EBF3 Disturb Transcriptional Profiles and Cause Intellectual Disability, Ataxia, and Facial Dysmorphism. Am J Hum Genet 100, 117-127 (2017).
Mutations in EBF3 Disturb Transcriptional Profiles and Cause Intellectual Disability, Ataxia, and Facial Dysmorphism. Am J Hum Genet 100, 117-127 (2017).
Mutations in Fibronectin Cause a Subtype of Spondylometaphyseal Dysplasia with "Corner Fractures". Am J Hum Genet 101, 815-823 (2017).
Mutations in Fibronectin Cause a Subtype of Spondylometaphyseal Dysplasia with "Corner Fractures". Am J Hum Genet 101, 815-823 (2017).
Mutations in Fibronectin Cause a Subtype of Spondylometaphyseal Dysplasia with "Corner Fractures". Am J Hum Genet 101, 815-823 (2017).