Lack of evidence for GWAS signals of exfoliation glaucoma working via monogenic loss-of-function mutation in the nearest gene

Author:

Meyer Kacie J12ORCID,Fingert John H23,Anderson Michael G1234ORCID

Affiliation:

1. Department of Molecular Physiology and Biophysics, University of Iowa , 51 Newton Rd, Iowa City, IA 52242 , United States

2. Institute for Vision Research, University of Iowa , 375 Newton Rd, Iowa City, IA 52242 , United States

3. Department of Ophthalmology and Visual Sciences, University of Iowa , 200 Hawkins Dr, Iowa City, IA 52242 , United States

4. Center for the Prevention and Treatment of Visual Loss, Iowa City VA Health Care System , 601 Hwy 6 W, Iowa City, IA 52246 , United States

Abstract

Abstract Purpose: Exfoliation syndrome (XFS) is a systemic disease of elastin-rich tissues involving a deposition of fibrillar exfoliative material (XFM) in the anterior chamber of the eye, which can promote glaucoma. The purpose of this study was to create mice with CRISPR/Cas9-induced variations in candidate genes identified from human genome-wide association studies (GWAS) and screen them for indices of XFS. Methods: Variants predicted to be deleterious were sought in the Agpat1, Cacna1a, Loxl1, Pomp, Rbms3, Sema6a, and Tlcd5 genes of C57BL/6J mice using CRISPR/Cas9-based gene editing. Strains were phenotyped by slit-lamp, SD-OCT imaging, and fundus exams at 1–5 mos of age. Smaller cohorts of 12-mos-old mice were also studied. Results: Deleterious variants were identified in six targets; Pomp was recalcitrant to targeting. Multiple alleles of some targets were isolated, yielding 12 strains. Across all genotypes and ages, 277 mice were assessed by 902 slit-lamp exams, 928 SD-OCT exams, and 358 fundus exams. Homozygosity for Agpat1 or Cacna1a mutations led to early lethality; homozygosity for Loxl1 mutations led to pelvic organ prolapse, preventing aging. Loxl1 homozygotes exhibited a conjunctival phenotype of potential relevance to XFS. Multiple other genotype-specific phenotypes were variously identified. XFM was not observed in any mice. Conclusions: This study did not detect XFM in any of the strains. This may have been due to species-specific differences, background dependence, or insufficient aging. Alternatively, it is possible that the current candidates, selected based on proximity to GWAS signals, are not effectors acting via monogenic loss-of-function mechanisms.

Funder

Glaucoma Foundation

National Institutes of Health

National Institutes of Health Center Support to the University of Iowa

Research to Prevent Blindness

Hadley-Carver Chair in Glaucoma

Roy J. and Lucille A. Carver College of Medicine

Publisher

Oxford University Press (OUP)

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