Complex Structural PPT1 Variant Associated with Non-syndromic Canine Retinal Degeneration

Author:

Murgiano Leonardo1,Becker Doreen12,Torjman Dina1,Niggel Jessica K1,Milano Ausra3,Cullen Cheryl4,Feng Rui5,Wang Fan6,Jagannathan Vidhya7,Pearce-Kelling Sue3,Katz Martin L8,Leeb Tosso7,Aguirre Gustavo D1

Affiliation:

1. Department of Clinical Sciences & Advanced Medicine, School of Veterinary Medicine, University of Pennsylvania, Philadelphia, PA

2. Institute of Animal Breeding and Husbandry, University of Kiel, Germany

3. OptiGen, LLC, Cornell Business & Technology Park, Ithaca, NY

4. CullenWebb Animal Eye Specialists, Riverview, N.B Canada

5. Department of Biostatistics, Epidemiology and Informatics, University of Pennsylvania Perelman School of Medicine, Philadelphia, PA

6. Department of Molecular Cardiology, Cleveland Clinic Lerner Research Institute, Cleveland, OH

7. Institute of Genetics, Vetsuisse Faculty, University of Bern, 3001 Bern, Switzerland

8. Mason Eye Institute, University of Missouri School of Medicine Columbia, Missouri

Abstract

Abstract Rod and cone photoreceptors are specialized retinal neurons that have a fundamental role in visual perception, capturing light and transducing it into a neuronal signal. Aberrant functioning of rod and/or cone photoreceptors can ultimately lead to progressive degeneration and eventually blindness. In man, many rod and rod-cone degenerative diseases are classified as forms of retinitis pigmentosa (RP). Dogs also have a comparable disease grouping termed progressive retinal atrophy (PRA). These diseases are generally due to single gene defects and follow Mendelian inheritance.We collected 51 DNA samples from Miniature Schnauzers affected by PRA (average age of diagnosis ∼3.9 ±1 years), as well as from 56 clinically normal controls of the same breed (average age ∼6.6 ±2.8 years). Pedigree analysis suggested monogenic autosomal recessive inheritance of PRA. GWAS and homozygosity mapping defined a critical interval in the first 4,796,806 bp of CFA15. Whole genome sequencing of two affected cases, a carrier and a control identified two candidate variants within the critical interval. One was an intronic SNV in HIVEP3, and the other was a complex structural variant consisting of the duplication of exon 5 of the PPT1 gene along with a conversion and insertion (named PPT1dci). PPT1dci was confirmed homozygous in a cohort of 22 cases, and 12 more cases were homozygous for the CFA15 haplotype. Additionally, the variant was found homozygous in 6 non-affected dogs of age higher than the average age of onset. The HIVEP3 variant was found heterozygous (n = 4) and homozygous wild-type (n = 1) in cases either homozygous for PPT1dci or for the mapped CFA15 haplotype. We detected the wildtype and three aberrant PPT1 transcripts in isolated white blood cell mRNA extracted from a PRA case homozygous for PPT1dci, and the aberrant transcripts involved inclusion of the duplicated exon 5 and novel exons following the activation of cryptic splice sites. No neurological signs were detected among the dogs homozygous for the PPT1dci variant. Therefore, we propose PPT1dci as causative for a non-syndromic form of PRA (PRAPPT1) that shows incomplete penetrance in Miniature Schnauzers, potentially related to the presence of the wild-type transcript. To our knowledge, this is the first case of isolated retinal degeneration associated with a PPT1 variant.

Publisher

Oxford University Press (OUP)

Subject

Genetics(clinical),Genetics,Molecular Biology

Reference61 articles.

1. Linkage analysis and comparative mapping of canine progressive rod-cone degeneration (prcd) establishes potential locus homology with retinitis pigmentosa (RP17) in humans.;Acland;Proc. Natl. Acad. Sci. USA,1998

2. A method and server for predicting damaging missense mutations.;Adzhubei;Nat. Methods,2010

3. Models, Mutants and Man: Searching for Unique Phenotypes and Genes in the Dog Model of Inherited Retinal Degeneration;Aguirre,2006

4. Morphological and biochemical studies of canine progressive rod-cone degeneration. 3H-fucose autoradiography.;Aguirre;Invest. Ophthalmol. Vis. Sci.,1986

5. Concepts and strategies in retinal gene therapy.;Aguirre;Invest. Ophthalmol. Vis. Sci.,2017

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