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SVEP1 as a Genetic Modifier of TEK-Related Primary Congenital Glaucoma
Terri L Young1, Kristina N Whisenhunt1, Jing Jin2
1Department of Ophthalmology and Visual Sciences, University of Wisconsin-Madison, Madison, Wisconsin, United States.
Insights
Primary congenital glaucoma (PCG) is linked to TEK gene mutations. A novel SVEP1 gene variant modifies PCG severity and penetrance by affecting TEK expression during Schlemm's canal development.
Area of Science:
- Ophthalmology
- Genetics
- Developmental Biology
Background:
- Primary congenital glaucoma (PCG) impairs aqueous drainage, leading to high intraocular pressure, globe enlargement, and optic neuropathy in children.
- TEK gene haploinsufficiency accounts for 5% of PCG cases, with low penetrance potentially due to Schlemm's canal (SC) dysgenesis.
Purpose of the Study:
- Investigate the genetic basis of PCG in eight families with identified TEK variants.
- Determine the role of SVEP1 as a potential disease modifier in PCG, particularly in a family with higher disease penetrance and severity.
Main Methods:
- Exome sequencing to identify rare coding/splice site variants in PCG patients.
- Assay of TEK variant effects on protein activity in HEK293 cells.
- Histological examination of ocular tissue and immunofluorescent staining of mouse anterior segments to analyze SC and SVEP1 expression.
- Quantitative PCR to measure SVEP1's effect on TEK expression in HUVECs.
Main Results:
- Heterozygous TEK loss-of-function alleles were identified in eight PCG families, with autosomal dominant inheritance confirmed in two.
- Family 8 showed increased PCG penetrance and severity, with SC absence noted in one affected individual's eye.
- A SVEP1 variant (p.R997C) was found in affected members of Family 8 and abrogated SVEP1's stimulation of TEK expression in HUVECs.
Conclusions:
- TEK haploinsufficiency is a confirmed cause of PCG with autosomal dominant inheritance.
- SVEP1 acts as a genetic modifier influencing TEK expression during SC development, thereby affecting PCG disease penetrance and severity.
Purpose:
Affecting children by age 3, primary congenital glaucoma (PCG) can cause debilitating vision loss by the developmental impairment of aqueous drainage resulting in high intraocular pressure (IOP), globe enlargement, and optic neuropathy. TEK haploinsufficiency accounts for 5% of PCG in diverse populations, with low penetrance explained by variable dysgenesis of Schlemm's canal (SC) in mice. We report eight families with TEK-related PCG, and provide evidence for SVEP1 as a disease modifier in family 8 with a higher penetrance and severity.
Methods:
Exome sequencing identified coding/splice site variants with an allele frequency less than 0.0001 (gnomAD). TEK variant effects were assayed in construct-transfected HEK293 cells via detection of autophosphorylated (active) TEK protein. An enucleated eye from an affected member of family 8 was examined via histology. SVEP1 expression in developing outflow tissues was detected by immunofluorescent staining of 7-day mouse anterior segments. SVEP1 stimulation of TEK expression in human umbilical vascular endothelial cells (HUVECs) was measured by TaqMan quantitative PCR.
Results:
Heterozygous TEK loss-of-function alleles were identified in eight PCG families, with parent-child disease transmission observed in two pedigrees. Family 8 exhibited greater disease penetrance and severity, histology revealed absence of SC in one eye, and SVEP1:p.R997C was identified in four of the five affected individuals. During SC development, SVEP1 is secreted by surrounding tissues. SVEP1:p.R997C abrogates stimulation of TEK expression by HUVECs.
Conclusions:
We provide further evidence for PCG caused by TEK haploinsufficiency, affirm autosomal dominant inheritance in two pedigrees, and propose SVEP1 as a modifier of TEK expression during SC development, affecting disease penetrance and severity.
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