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Castilla-Vallmanya, L. et al. Phenotypic spectrum and transcriptomic profile associated with germline variants in TRAF7. Genet Med 22, 1215-1226 (2020).
Castilla-Vallmanya, L. et al. Phenotypic spectrum and transcriptomic profile associated with germline variants in TRAF7. Genet Med 22, 1215-1226 (2020).
Castilla-Vallmanya, L. et al. Phenotypic spectrum and transcriptomic profile associated with germline variants in TRAF7. Genet Med 22, 1215-1226 (2020).
Castilla-Vallmanya, L. et al. Phenotypic spectrum and transcriptomic profile associated with germline variants in TRAF7. Genet Med 22, 1215-1226 (2020).
Castilla-Vallmanya, L. et al. Phenotypic spectrum and transcriptomic profile associated with germline variants in TRAF7. Genet Med 22, 1215-1226 (2020).
Batzir, N. Assia et al. Phenotypic expansion of POGZ-related intellectual disability syndrome (White-Sutton syndrome). Am J Med Genet A 182, 38-52 (2020).
Atzmony, L., Zaki, T. D., Antaya, R. J. & Choate, K. A. Phenotypic expansion of POFUT1 loss of function mutations in a disorder featuring segmental dyspigmentation with eczematous and folliculo-centric lesions. Am J Med Genet A 179, 2469-2473 (2019).
Westland, R. et al. Phenotypic expansion of DGKE-associated diseases. J Am Soc Nephrol 25, 1408-14 (2014).
Montenegro-Garreaud, X. et al. Phenotypic expansion in KIF1A-related dominant disorders: A description of novel variants and review of published cases. Hum Mutat 41, 2094-2104 (2020).
Wang, X. et al. Phenotypic expansion in - a common cause of intellectual disability in females. Ann Clin Transl Neurol 5, 1277-1285 (2018).
Khayat, M. M. et al. Phenotypic and protein localization heterogeneity associated with AHDC1 pathogenic protein-truncating alleles in Xia-Gibbs syndrome. Hum Mutat 42, 577-591 (2021).
Bostwick, B. L. et al. Phenotypic and molecular characterisation of CDK13-related congenital heart defects, dysmorphic facial features and intellectual developmental disorders. Genome Med 9, 73 (2017).
Wu, C. - H. Wilfred et al. Phenotype expansion of heterozygous FOXC1 pathogenic variants toward involvement of congenital anomalies of the kidneys and urinary tract (CAKUT). Genet Med 22, 1673-1681 (2020).
Lo, S. M. et al. Phenotype diversity in type 1 Gaucher disease: discovering the genetic basis of Gaucher disease/hematologic malignancy phenotype by individual genome analysis. Blood 119, 4731-40 (2012).
Stray-Pedersen, A. et al. PGM3 mutations cause a congenital disorder of glycosylation with severe immunodeficiency and skeletal dysplasia. Am J Hum Genet 95, 96-107 (2014).
Chen, N. et al. Perturbations of genes essential for Müllerian duct and Wölffian duct development in Mayer-Rokitansky-Küster-Hauser syndrome. Am J Hum Genet 108, 337-345 (2021).
Chen, N. et al. Perturbations of genes essential for Müllerian duct and Wölffian duct development in Mayer-Rokitansky-Küster-Hauser syndrome. Am J Hum Genet 108, 337-345 (2021).
Chen, N. et al. Perturbations of genes essential for Müllerian duct and Wölffian duct development in Mayer-Rokitansky-Küster-Hauser syndrome. Am J Hum Genet 108, 337-345 (2021).
Chen, N. et al. Perturbations of genes essential for Müllerian duct and Wölffian duct development in Mayer-Rokitansky-Küster-Hauser syndrome. Am J Hum Genet 108, 337-345 (2021).
Chen, N. et al. Perturbations of genes essential for Müllerian duct and Wölffian duct development in Mayer-Rokitansky-Küster-Hauser syndrome. Am J Hum Genet 108, 337-345 (2021).
Chen, N. et al. Perturbations of genes essential for Müllerian duct and Wölffian duct development in Mayer-Rokitansky-Küster-Hauser syndrome. Am J Hum Genet 108, 337-345 (2021).
Wang, K. et al. Perturbations of BMP/TGF-β and VEGF/VEGFR signalling pathways in non-syndromic sporadic brain arteriovenous malformations (BAVM). J Med Genet 55, 675-684 (2018).
Wang, K. et al. Perturbations of BMP/TGF-β and VEGF/VEGFR signalling pathways in non-syndromic sporadic brain arteriovenous malformations (BAVM). J Med Genet 55, 675-684 (2018).
Wang, K. et al. Perturbations of BMP/TGF-β and VEGF/VEGFR signalling pathways in non-syndromic sporadic brain arteriovenous malformations (BAVM). J Med Genet 55, 675-684 (2018).
Jenkinson, E. M. et al. Perrault syndrome is caused by recessive mutations in CLPP, encoding a mitochondrial ATP-dependent chambered protease. Am J Hum Genet 92, 605-13 (2013).
Jenkinson, E. M. et al. Perrault syndrome is caused by recessive mutations in CLPP, encoding a mitochondrial ATP-dependent chambered protease. Am J Hum Genet 92, 605-13 (2013).
Jenkinson, E. M. et al. Perrault syndrome is caused by recessive mutations in CLPP, encoding a mitochondrial ATP-dependent chambered protease. Am J Hum Genet 92, 605-13 (2013).
Kapferer-Seebacher, I. et al. Periodontal Ehlers-Danlos Syndrome Is Caused by Mutations in C1R and C1S, which Encode Subcomponents C1r and C1s of Complement. Am J Hum Genet 99, 1005-1014 (2016).
Kapferer-Seebacher, I. et al. Periodontal Ehlers-Danlos Syndrome Is Caused by Mutations in C1R and C1S, which Encode Subcomponents C1r and C1s of Complement. Am J Hum Genet 99, 1005-1014 (2016).
Gawlinski, P. et al. PEHO Syndrome May Represent Phenotypic Expansion at the Severe End of the Early-Onset Encephalopathies. Pediatr Neurol 60, 83-7 (2016).
Çağlayan, A. O. et al. A patient with a novel homozygous missense mutation in FTO and concomitant nonsense mutation in CETP. J Hum Genet 61, 395-403 (2016).
Çağlayan, A. O. et al. A patient with a novel homozygous missense mutation in FTO and concomitant nonsense mutation in CETP. J Hum Genet 61, 395-403 (2016).
Amor, D. J. et al. Pathogenic Variants in GPC4 Cause Keipert Syndrome. Am J Hum Genet 104, 914-924 (2019).
Tsai, M. - H. et al. Pathogenic Variants in CEP85L Cause Sporadic and Familial Posterior Predominant Lissencephaly. Neuron 106, 237-245.e8 (2020).
Tsai, M. - H. et al. Pathogenic Variants in CEP85L Cause Sporadic and Familial Posterior Predominant Lissencephaly. Neuron 106, 237-245.e8 (2020).
Tsai, M. - H. et al. Pathogenic Variants in CEP85L Cause Sporadic and Familial Posterior Predominant Lissencephaly. Neuron 106, 237-245.e8 (2020).
Tsai, M. - H. et al. Pathogenic Variants in CEP85L Cause Sporadic and Familial Posterior Predominant Lissencephaly. Neuron 106, 237-245.e8 (2020).
Li, D. et al. Pathogenic variants in , a chromatin remodeler, cause a range of syndromic neurodevelopmental features. Sci Adv 7, (2021).
Li, D. et al. Pathogenic variants in , a chromatin remodeler, cause a range of syndromic neurodevelopmental features. Sci Adv 7, (2021).
Bryen, S. J. et al. Pathogenic deep intronic MTM1 variant activates a pseudo-exon encoding a nonsense codon resulting in severe X-linked myotubular myopathy. Eur J Hum Genet 29, 61-66 (2021).
Bryen, S. J. et al. Pathogenic deep intronic MTM1 variant activates a pseudo-exon encoding a nonsense codon resulting in severe X-linked myotubular myopathy. Eur J Hum Genet 29, 61-66 (2021).
Bryen, S. J. et al. Pathogenic Abnormal Splicing Due to Intronic Deletions that Induce Biophysical Space Constraint for Spliceosome Assembly. Am J Hum Genet 105, 573-587 (2019).
Bryen, S. J. et al. Pathogenic Abnormal Splicing Due to Intronic Deletions that Induce Biophysical Space Constraint for Spliceosome Assembly. Am J Hum Genet 105, 573-587 (2019).
Szafranski, P. et al. Pathogenetics of alveolar capillary dysplasia with misalignment of pulmonary veins. Hum Genet 135, 569-586 (2016).
Szafranski, P. et al. Pathogenetics of alveolar capillary dysplasia with misalignment of pulmonary veins. Hum Genet 135, 569-586 (2016).
Szafranski, P. et al. Pathogenetics of alveolar capillary dysplasia with misalignment of pulmonary veins. Hum Genet 135, 569-586 (2016).
Szafranski, P. et al. Pathogenetics of alveolar capillary dysplasia with misalignment of pulmonary veins. Hum Genet 135, 569-586 (2016).
Arts, P. et al. Paternal mosaicism for a novel PBX1 mutation associated with recurrent perinatal death: Phenotypic expansion of the PBX1-related syndrome. Am J Med Genet A 182, 1273-1277 (2020).
Zarate, S. et al. Parliament2: Accurate structural variant calling at scale. Gigascience 9, (2020).
Campbell, I. M. et al. Parental somatic mosaicism is underrecognized and influences recurrence risk of genomic disorders. Am J Hum Genet 95, 173-82 (2014).

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