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1. Functional and clinical studies reveal pathophysiological complexity of CLCN4-related neurodevelopmental condition.

2. De novo and inherited mutations in the X-linked gene CLCN4 are associated with syndromic intellectual disability and behavior and seizure disorders in males and females

4. De novo and inherited mutations in the X-linked gene CLCN4 are associated with syndromic intellectual disability and behavior and seizure disorders in males and females

5. Mild phenotypes in a series of patients with Opitz GBBB syndrome with MID1 mutations.

6. Duplication of the MID1 first exon in a patient with Opitz G/BBB syndrome.

7. The Opitz syndrome gene product, MID1, associates with microtubules.

8. Functional and clinical studies reveal pathophysiological complexity of CLCN4-related neurodevelopmental condition.

9. Novel pathogenic EIF2S3 missense variants causing clinically variable MEHMO syndrome with impaired eIF2γ translational function, and literature review.

10. Deleterious de novo variants of X-linked ZC4H2 in females cause a variable phenotype with neurogenic arthrogryposis multiplex congenita.

11. Genetics of intellectual disability in consanguineous families.

12. Effect of inbreeding on intellectual disability revisited by trio sequencing.

13. ARHGEF9 disease: Phenotype clarification and genotype-phenotype correlation.

14. Redefining the MED13L syndrome.

16. Ca++/CaMKII switches nociceptor-sensitizing stimuli into desensitizing stimuli.

17. GPR30 estrogen receptor agonists induce mechanical hyperalgesia in the rat.

18. Mild phenotypes in a series of patients with Opitz GBBB syndrome with MID1 mutations.

19. Regulation of the MID1 protein function is fine-tuned by a complex pattern of alternative splicing.

20. NYX (nyctalopin on chromosome X), the gene mutated in congenital stationary night blindness, encodes a cell surface protein.

21. Duplication of the MID1 first exon in a patient with Opitz G/BBB syndrome.

22. Elevated levels of Rad51 recombination protein in tumor cells.

23. MID1, mutated in Opitz syndrome, encodes an ubiquitin ligase that targets phosphatase 2A for degradation.

24. The Opitz syndrome gene product, MID1, associates with microtubules.

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