Identification of an ADAMTS2 frameshift variant in a cat family with Ehlers–Danlos syndrome

Author:

Simon Rebecca1,Kiener Sarah23,Thom Nina4,Schäfer Laura4,Müller Janina5,Schlohsarczyk Elfi K5,Gärtner Ulrich6,Herden Christiane5,Leeb Tosso23,Lühken Gesine1

Affiliation:

1. Institute of Animal Breeding and Genetics, Justus Liebig University , Giessen 35390 , Germany

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

3. Dermfocus, University of Bern , Bern 3001 , Switzerland

4. Small Animal Clinic, Justus Liebig University , Giessen 35392 , Germany

5. Institute of Veterinary Pathology, Justus Liebig University , Giessen 35392 , Germany

6. Institute of Anatomy and Cell Biology, Justus Liebig University , Giessen 35385 , Germany

Abstract

Abstract We investigated 4 European domestic shorthair kittens with skin lesions consistent with the dermatosparaxis type of the Ehlers–Danlos syndrome, a connective tissue disorder. The kittens were sired by the same tomcat but were born by 3 different mothers. The kittens had easily torn skin resulting in nonhealing skin wounds. Both clinically and histologically, the skin showed thin epidermis in addition to inflammatory changes. Changes in collagen fibers were visible in electron micrographs. The complete genome of an affected kitten was sequenced. A one base pair duplication leading to a frameshift in the candidate gene ADAMTS2 was identified, p.(Ser235fs*3). All 4 affected cats carried the frameshift duplication in a homozygous state. Genotypes at this variant showed perfect cosegregation with the autosomal recessive Ehlers–Danlos syndrome phenotype in the available family. The mutant allele did not occur in 48 unrelated control cats. ADAMTS2 loss-of-function variants cause autosomal recessive forms of Ehlers–Danlos syndrome in humans, mice, dogs, cattle, and sheep. The available evidence from our investigation together with the functional knowledge on ADAMTS2 in other species allows to classify the identified ADAMTS2 variant as pathogenic and most likely causative variant for the observed Ehlers–Danlos syndrome.

Funder

Swiss National Science Foundation

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology

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