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2021
Mubungu, G. et al. Clinical presentation and evolution of Xia-Gibbs syndrome due to p.Gly375ArgfsTer3 variant in a patient from DR Congo (Central Africa). Am J Med Genet A 185, 990-994 (2021).
Mubungu, G. et al. Clinical presentation and evolution of Xia-Gibbs syndrome due to p.Gly375ArgfsTer3 variant in a patient from DR Congo (Central Africa). Am J Med Genet A 185, 990-994 (2021).
Le Coz, C. et al. Constrained chromatin accessibility in PU.1-mutated agammaglobulinemia patients. J Exp Med 218, (2021).
Ernst, M. E. et al. CSNK2B: A broad spectrum of neurodevelopmental disability and epilepsy severity. Epilepsia (2021). doi:10.1111/epi.16931
Ernst, M. E. et al. CSNK2B: A broad spectrum of neurodevelopmental disability and epilepsy severity. Epilepsia (2021). doi:10.1111/epi.16931
Ernst, M. E. et al. CSNK2B: A broad spectrum of neurodevelopmental disability and epilepsy severity. Epilepsia (2021). doi:10.1111/epi.16931
Ernst, M. E. et al. CSNK2B: A broad spectrum of neurodevelopmental disability and epilepsy severity. Epilepsia (2021). doi:10.1111/epi.16931
Ernst, M. E. et al. CSNK2B: A broad spectrum of neurodevelopmental disability and epilepsy severity. Epilepsia (2021). doi:10.1111/epi.16931
Ernst, M. E. et al. CSNK2B: A broad spectrum of neurodevelopmental disability and epilepsy severity. Epilepsia (2021). doi:10.1111/epi.16931
Ernst, M. E. et al. CSNK2B: A broad spectrum of neurodevelopmental disability and epilepsy severity. Epilepsia (2021). doi:10.1111/epi.16931
Ernst, M. E. et al. CSNK2B: A broad spectrum of neurodevelopmental disability and epilepsy severity. Epilepsia (2021). doi:10.1111/epi.16931
Ernst, M. E. et al. CSNK2B: A broad spectrum of neurodevelopmental disability and epilepsy severity. Epilepsia (2021). doi:10.1111/epi.16931
Weng, P. L. et al. De novo TRIM8 variants impair its protein localization to nuclear bodies and cause developmental delay, epilepsy, and focal segmental glomerulosclerosis. Am J Hum Genet 108, 357-367 (2021).
Weng, P. L. et al. De novo TRIM8 variants impair its protein localization to nuclear bodies and cause developmental delay, epilepsy, and focal segmental glomerulosclerosis. Am J Hum Genet 108, 357-367 (2021).
Weng, P. L. et al. De novo TRIM8 variants impair its protein localization to nuclear bodies and cause developmental delay, epilepsy, and focal segmental glomerulosclerosis. Am J Hum Genet 108, 357-367 (2021).
Weng, P. L. et al. De novo TRIM8 variants impair its protein localization to nuclear bodies and cause developmental delay, epilepsy, and focal segmental glomerulosclerosis. Am J Hum Genet 108, 357-367 (2021).
Weng, P. L. et al. De novo TRIM8 variants impair its protein localization to nuclear bodies and cause developmental delay, epilepsy, and focal segmental glomerulosclerosis. Am J Hum Genet 108, 357-367 (2021).
Weng, P. L. et al. De novo TRIM8 variants impair its protein localization to nuclear bodies and cause developmental delay, epilepsy, and focal segmental glomerulosclerosis. Am J Hum Genet 108, 357-367 (2021).
Klöckner, C. et al. De novo variants in SNAP25 cause an early-onset developmental and epileptic encephalopathy. Genet Med 23, 653-660 (2021).
Klöckner, C. et al. De novo variants in SNAP25 cause an early-onset developmental and epileptic encephalopathy. Genet Med 23, 653-660 (2021).
Klöckner, C. et al. De novo variants in SNAP25 cause an early-onset developmental and epileptic encephalopathy. Genet Med 23, 653-660 (2021).
Klöckner, C. et al. De novo variants in SNAP25 cause an early-onset developmental and epileptic encephalopathy. Genet Med 23, 653-660 (2021).
Klöckner, C. et al. De novo variants in SNAP25 cause an early-onset developmental and epileptic encephalopathy. Genet Med 23, 653-660 (2021).
Klöckner, C. et al. De novo variants in SNAP25 cause an early-onset developmental and epileptic encephalopathy. Genet Med 23, 653-660 (2021).
Dias, C. et al. De novo variants in TCF7L2 are associated with a syndromic neurodevelopmental disorder. Am J Med Genet A (2021). doi:10.1002/ajmg.a.62254
Dias, C. et al. De novo variants in TCF7L2 are associated with a syndromic neurodevelopmental disorder. Am J Med Genet A (2021). doi:10.1002/ajmg.a.62254
Ushiki, A. et al. Deletion of CTCF sites in the SHH locus alters enhancer-promoter interactions and leads to acheiropodia. Nat Commun 12, 2282 (2021).
Bigio, B. et al. Detection of homozygous and hemizygous complete or partial exon deletions by whole-exome sequencing. NAR Genom Bioinform 3, lqab037 (2021).
Bigio, B. et al. Detection of homozygous and hemizygous complete or partial exon deletions by whole-exome sequencing. NAR Genom Bioinform 3, lqab037 (2021).
Bigio, B. et al. Detection of homozygous and hemizygous complete or partial exon deletions by whole-exome sequencing. NAR Genom Bioinform 3, lqab037 (2021).
Rodríguez-Palmero, A. et al. DLG4-related synaptopathy: a new rare brain disorder. Genet Med 23, 888-899 (2021).
Rodríguez-Palmero, A. et al. DLG4-related synaptopathy: a new rare brain disorder. Genet Med 23, 888-899 (2021).
Rodríguez-Palmero, A. et al. DLG4-related synaptopathy: a new rare brain disorder. Genet Med 23, 888-899 (2021).
Rodríguez-Palmero, A. et al. DLG4-related synaptopathy: a new rare brain disorder. Genet Med 23, 888-899 (2021).
Rodríguez-Palmero, A. et al. DLG4-related synaptopathy: a new rare brain disorder. Genet Med 23, 888-899 (2021).
Rodríguez-Palmero, A. et al. DLG4-related synaptopathy: a new rare brain disorder. Genet Med 23, 888-899 (2021).
White, S. M. et al. A DNA repair disorder caused by de novo monoallelic DDB1 variants is associated with a neurodevelopmental syndrome. Am J Hum Genet 108, 749-756 (2021).
White, S. M. et al. A DNA repair disorder caused by de novo monoallelic DDB1 variants is associated with a neurodevelopmental syndrome. Am J Hum Genet 108, 749-756 (2021).
White, S. M. et al. A DNA repair disorder caused by de novo monoallelic DDB1 variants is associated with a neurodevelopmental syndrome. Am J Hum Genet 108, 749-756 (2021).
Rickman, O. J. et al. Dominant mitochondrial membrane protein-associated neurodegeneration (MPAN) variants cluster within a specific C19orf12 isoform. Parkinsonism Relat Disord 82, 84-86 (2021).
Reis, L. M. et al. Dominant variants in PRR12 result in unilateral or bilateral complex microphthalmia. Clin Genet 99, 437-442 (2021).
D'Gama, A. M. et al. Exome sequencing identifies novel missense and deletion variants in RTN4IP1 associated with optic atrophy, global developmental delay, epilepsy, ataxia, and choreoathetosis. Am J Med Genet A 185, 203-207 (2021).
Diez-Fairen, M. et al. Exome-wide rare variant analysis in familial essential tremor. Parkinsonism Relat Disord 82, 109-116 (2021).
Diez-Fairen, M. et al. Exome-wide rare variant analysis in familial essential tremor. Parkinsonism Relat Disord 82, 109-116 (2021).
Diez-Fairen, M. et al. Exome-wide rare variant analysis in familial essential tremor. Parkinsonism Relat Disord 82, 109-116 (2021).
Alsharhan, H. et al. Expanding the phenotype, genotype and biochemical knowledge of ALG3-CDG. J Inherit Metab Dis (2021). doi:10.1002/jimd.12367
Wahlster, L. et al. Familial thrombocytopenia due to a complex structural variant resulting in a WAC-ANKRD26 fusion transcript. J Exp Med 218, (2021).
Hildebrandt, C. C. et al. Further delineation of van den Ende-Gupta syndrome: Genetic heterogeneity and overlap with congenital heart defects and skeletal malformations syndrome. Am J Med Genet A (2021). doi:10.1002/ajmg.a.62194
Klämbt, V. et al. Generation of Monogenic Candidate Genes for Human Nephrotic Syndrome Using 3 Independent Approaches. Kidney Int Rep 6, 460-471 (2021).
Kasela, S. et al. Genetic and non-genetic factors affecting the expression of COVID-19-relevant genes in the large airway epithelium. Genome Med 13, 66 (2021).

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