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Putative digenic inheritance of heterozygous RP1L1 and C2orf71 null mutations in syndromic retinal dystrophy.

Publication ,  Journal Article
Liu, YP; Bosch, DGM; Siemiatkowska, AM; Rendtorff, ND; Boonstra, FN; Möller, C; Tranebjærg, L; Katsanis, N; Cremers, FPM
Published in: Ophthalmic Genet
2017

BACKGROUND: Retinitis pigmentosa (RP) is the most common cause of inherited retinal degeneration and can occur in non-syndromic and syndromic forms. Syndromic RP is accompanied by other symptoms such as intellectual disability, hearing loss, or congenital abnormalities. Both forms are known to exhibit complex genetic interactions that can modulate the penetrance and expressivity of the phenotype. MATERIALS AND METHODS: In an individual with atypical RP, hearing loss, ataxia and cerebellar atrophy, whole exome sequencing was performed. The candidate pathogenic variants were tested by developing an in vivo zebrafish model and assaying for retinal and cerebellar integrity. RESULTS: Exome sequencing revealed a complex heterozygous protein-truncating mutation in RP1L1, p.[(Lys111Glnfs*27; Gln2373*)], and a heterozygous nonsense mutation in C2orf71, p.(Ser512*). Mutations in both genes have previously been implicated in autosomal recessive non-syndromic RP, raising the possibility of a digenic model in this family. Functional testing in a zebrafish model for two key phenotypes of the affected person showed that the combinatorial suppression of rp1l1 and c2orf71l induced discrete pathology in terms of reduction of eye size with concomitant loss of rhodopsin in the photoreceptors, and disorganization of the cerebellum. CONCLUSIONS: We propose that the combination of heterozygous loss-of-function mutations in these genes drives syndromic retinal dystrophy, likely through the genetic interaction of at least two loci. Haploinsufficiency at each of these loci is insufficient to induce overt pathology.

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Published In

Ophthalmic Genet

DOI

EISSN

1744-5094

Publication Date

2017

Volume

38

Issue

2

Start / End Page

127 / 132

Location

England

Related Subject Headings

  • Zebrafish Proteins
  • Zebrafish
  • Sequence Analysis, DNA
  • Rhodopsin
  • Retinitis Pigmentosa
  • Pedigree
  • Ophthalmology & Optometry
  • Mutation
  • Inheritance Patterns
  • Humans
 

Citation

APA
Chicago
ICMJE
MLA
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Liu, Y. P., Bosch, D. G. M., Siemiatkowska, A. M., Rendtorff, N. D., Boonstra, F. N., Möller, C., … Cremers, F. P. M. (2017). Putative digenic inheritance of heterozygous RP1L1 and C2orf71 null mutations in syndromic retinal dystrophy. Ophthalmic Genet, 38(2), 127–132. https://doi.org/10.3109/13816810.2016.1151898
Liu, Yangfan P., Daniëlle G. M. Bosch, Anna M. Siemiatkowska, Nanna Dahl Rendtorff, F Nienke Boonstra, Claes Möller, Lisbeth Tranebjærg, Nicholas Katsanis, and Frans P. M. Cremers. “Putative digenic inheritance of heterozygous RP1L1 and C2orf71 null mutations in syndromic retinal dystrophy.Ophthalmic Genet 38, no. 2 (2017): 127–32. https://doi.org/10.3109/13816810.2016.1151898.
Liu YP, Bosch DGM, Siemiatkowska AM, Rendtorff ND, Boonstra FN, Möller C, et al. Putative digenic inheritance of heterozygous RP1L1 and C2orf71 null mutations in syndromic retinal dystrophy. Ophthalmic Genet. 2017;38(2):127–32.
Liu, Yangfan P., et al. “Putative digenic inheritance of heterozygous RP1L1 and C2orf71 null mutations in syndromic retinal dystrophy.Ophthalmic Genet, vol. 38, no. 2, 2017, pp. 127–32. Pubmed, doi:10.3109/13816810.2016.1151898.
Liu YP, Bosch DGM, Siemiatkowska AM, Rendtorff ND, Boonstra FN, Möller C, Tranebjærg L, Katsanis N, Cremers FPM. Putative digenic inheritance of heterozygous RP1L1 and C2orf71 null mutations in syndromic retinal dystrophy. Ophthalmic Genet. 2017;38(2):127–132.

Published In

Ophthalmic Genet

DOI

EISSN

1744-5094

Publication Date

2017

Volume

38

Issue

2

Start / End Page

127 / 132

Location

England

Related Subject Headings

  • Zebrafish Proteins
  • Zebrafish
  • Sequence Analysis, DNA
  • Rhodopsin
  • Retinitis Pigmentosa
  • Pedigree
  • Ophthalmology & Optometry
  • Mutation
  • Inheritance Patterns
  • Humans