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1. Variants in the AGBL5 gene are responsible for autosomal recessive Retinitis pigmentosa with hearing loss

2. Substitution of a single non-coding nucleotide upstream of TMEM216 causes non-syndromic retinitis pigmentosa and is associated with reduced TMEM216 expression

5. Detection of elusive DNA copy-number variations in hereditary disease and cancer through the use of noncoding and off-target sequencing reads

8. Multi-omics approach dissects cis-regulatory mechanisms underlying North Carolina macular dystrophy, a retinal enhanceropathy

9. Contributors

10. Malattia Leventinese

11. Stargardt Macular Dystrophy

12. GNB1-Related Rod-Cone Dystrophy: A Case Report

18. Cost-effective sequence analysis of 113 genes in 1,192 probands with retinitis pigmentosa and Leber congenital amaurosis

19. Cost-effective sequence analysis of 113 genes in 1,192 probands with retinitis pigmentosa and Leber congenital amaurosis

20. Genetics of Retinitis Pigmentosa and Other Hereditary Retinal Disorders in Western Switzerland.

21. Characterisation of the retinal phenotype using multimodal imaging in novel compound heterozygote variants ofCYP2U1

22. Cost-effective sequence analysis of 113 genes in 1,192 probands with retinitis pigmentosa and Leber congenital amaurosis

23. Variants in the AGBL5gene are responsible for autosomal recessive Retinitis pigmentosa with hearing loss

24. Cost-effective sequence analysis of 113 genes in 1,192 probands with retinitis pigmentosa and Leber congenital amaurosis

26. Multi-omics approach dissects cis-regulatory mechanisms underlying North Carolina macular dystrophy, a retinal enhanceropathy

27. Contribution of Whole-Genome Sequencing and Transcript Analysis to Decipher Retinal Diseases Associated with MFSD8 Variants

29. Multi-omics profiling, in vitro and in vivo enhancer assays dissect the cis-regulatory mechanisms underlying North Carolina macular dystrophy, a retinal enhanceropathy

33. Mutations in the polyglutamylase gene TTLL5, expressed in photoreceptor cells and spermatozoa, are associated with cone-rod degeneration and reduced male fertility

38. Prognosis for Splicing Factor PRPF8 Retinitis Pigmentosa, Novel Mutations and Correlation between Human and Yeast Phenotypes

46. Mutations in the polyglutamylase gene TTLL5, expressed in photoreceptor cells and spermatozoa, are associated with cone-rod degeneration and reduced male fertility

47. Mutations in the polyglutamylase geneTTLL5, expressed in photoreceptor cells and spermatozoa, are associated with cone-rod degeneration and reduced male fertility

49. Variability in clinical phenotypes of PRPF8 -linked autosomal dominant retinitis pigmentosa correlates with differential PRPF8/SNRNP200 interactions.

50. Disease mechanism for retinitis pigmentosa (RP11) caused by missense mutations in the splicing factor gene PRPF31

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