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1. De novo missense variants in RRAGC lead to a fatal mTORopathy of early childhood.

2. Evidence for 28 genetic disorders discovered by combining healthcare and research data

3. Germline AGO2 mutations impair RNA interference and human neurological development

4. Neurodevelopmental disorders: a next generation

5. De Novo and Inherited Pathogenic Variants in KDM3B Cause Intellectual Disability, Short Stature, and Facial Dysmorphism

6. Neurodevelopmental disorders: a next generation

7. Enabling global clinical collaborations on identifiable patient data: The Minerva Initiative

8. De Novo and Inherited Loss-of-Function Variants in TLK2 : Clinical and Genotype-Phenotype Evaluation of a Distinct Neurodevelopmental Disorder

9. Okur‐Chung neurodevelopmental syndrome: Eight additional cases with implications on phenotype and genotype expansion

10. A Recurrent De Novo PACS2 Heterozygous Missense Variant Causes Neonatal-Onset Developmental Epileptic Encephalopathy, Facial Dysmorphism, and Cerebellar Dysgenesis

11. Expanding the neurodevelopmental phenotype of PURA syndrome

12. Okur-Chung neurodevelopmental syndrome: Eight additional cases with implications on phenotype and genotype expansion

13. PURA syndrome: clinical delineation and genotype-phenotype study in 32 individuals with review of published literature

14. Functional convergence of histone methyltransferases EHMT1 and KMT2C involved in intellectual disability and autism spectrum disorder

15. Recurrent De Novo Mutations Disturbing the GTP/GDP Binding Pocket of RAB11B Cause Intellectual Disability and a Distinctive Brain Phenotype

16. RAC1 Missense Mutations in Developmental Disorders with Diverse Phenotypes

17. Variation in a range of mTOR-related genes associates with intracranial volume and intellectual disability

18. RAC1 Missense Mutations in Developmental Disorders with Diverse Phenotypes

19. Variation in a range of mTOR-related genes associates with intracranial volume and intellectual disability

20. De Novo Mutations in SON Disrupt RNA Splicing of Genes Essential for Brain Development and Metabolism, Causing an Intellectual-Disability Syndrome

21. Meta-analysis of 2,104 trios provides support for 10 new genes for intellectual disability

22. TRIO loss of function is associated with mild intellectual disability and affects dendritic branching and synapse function

23. De Novo Loss-of-Function Mutations in USP9X Cause a Female-Specific Recognizable Syndrome with Developmental Delay and Congenital Malformations

24. De Novo Mutations in SON Disrupt RNA Splicing of Genes Essential for Brain Development and Metabolism, Causing an Intellectual-Disability Syndrome

25. De Novo Loss-of-Function Mutations in USP9X Cause a Female-Specific Recognizable Syndrome with Developmental Delay and Congenital Malformations

26. B56delta-related protein phosphatase 2A dysfunction identified in patients with intellectual disability

27. Mutations in DDX3X Are a Common Cause of Unexplained Intellectual Disability with Gender-Specific Effects on Wnt Signaling

28. Phenotypic spectrum and transcriptomic profile associated with germline variants in TRAF7

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