Epithelial recurrent erosion dystrophy (ERED) from the splice site altering COL17A1 variant c.3156C>T in families of Finnish‐Swedish ancestry

Author:

Turunen Joni A.12ORCID,Tuisku Ilpo S.3,Repo Pauliina12ORCID,Mörtenhumer Sanna3,Kawan Sabita2ORCID,Järvinen Reetta‐Stiina2,Korsbäck Anna3,Immonen Annamari T.23ORCID,Kivelä Tero T.45ORCID

Affiliation:

1. Ophthalmic Genetics Service, Department of Ophthalmology University of Helsinki and Helsinki University Hospital Helsinki Finland

2. Eye Genetics Group, Folkhälsan Research Center Helsinki Finland

3. Cornea and Anterior Segment Surgery Service, Department of Ophthalmology University of Helsinki and Helsinki University Hospital Helsinki Finland

4. Ophthalmic Pathology Laboratory, Department of Ophthalmology University of Helsinki and Helsinki University Hospital Helsinki Finland

5. Department of Pathology HUSLAB Helsinki Finland

Abstract

AbstractPurposeTo describe four Finnish families with epithelial recurrent erosion dystrophy (ERED) caused by the pathogenic variant c.3156C>T in collagen type XVII alpha 1 chain gene (COL17A1).MethodsEleven affected and two unaffected individuals underwent clinical ophthalmological examination, anterior segment photography, and corneal topography. Two of them underwent phototherapeutic keratectomy (PTK). Genetic analysis included both next‐generation and Sanger sequencing. Specimens from the manual keratectomy of one patient were available for ophthalmic pathologic examination, including immunohistochemistry.ResultsThe common splice‐site altering synonymous variant c.3156C > T, p.(Gly1052=) in COL17A1 was confirmed in 15 individuals with ERED from the four families. Subepithelial corneal scarring grades varied and increased with age, leading to decreased best‐corrected visual acuity. PTK improved vision in 58‐ and 67‐year‐old individuals without reactivating the disease. The keratectomy specimens showed an uneven epithelium and a spectrum of basement membrane abnormalities, including breaks, fragmentation, multiplication and entrapment within the subepithelial scar, reflecting recurrent erosions. The stromal cells consisted of varying proportions of bland and activated fibroblasts and myofibroblasts, reflecting different ages of scars. The family with the largest number of known affected generations originated from Southern Sweden.ConclusionThe phenotype in the Finnish ERED families is consistent with earlier reports of the c.3156C > T variant, although the severity has varied between reports. The phenotype may be modulated by other genes. This study suggests a likely founder effect of the variant in both Finnish and Swedish populations due to their shared population histories. If vision is compromised, PTK can be considered especially in older patients.

Funder

Ella ja Georg Ehrnroothin Säätiö

Evald ja Hilda Nissin Säätiö

Helsingin ja Uudenmaan Sairaanhoitopiiri

Sigrid Juséliuksen Säätiö

Silmäsäätiö

Publisher

Wiley

Subject

Ophthalmology,General Medicine

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3. Cloning of the human type XVII collagen gene (COL17A1), and detection of novel mutations in generalized atrophic benign epidermolysis bullosa;Gatalica B.;American Journal of Human Genetics,1997

4. A new corneal disease with recurrent erosive episodes and autosomal-dominant inheritance

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