Angiopoietin receptor TEK mutations underlie primary congenital glaucoma with variable expressivity.

dc.contributor.author

Souma, Tomokazu

dc.contributor.author

Tompson, Stuart W

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Thomson, Benjamin R

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Siggs, Owen M

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Kizhatil, Krishnakumar

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Yamaguchi, Shinji

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Feng, Liang

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Limviphuvadh, Vachiranee

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Whisenhunt, Kristina N

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Maurer-Stroh, Sebastian

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Yanovitch, Tammy L

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Kalaydjieva, Luba

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Azmanov, Dimitar N

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Finzi, Simone

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Mauri, Lucia

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Javadiyan, Shahrbanou

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Souzeau, Emmanuelle

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Zhou, Tiger

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Hewitt, Alex W

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Kloss, Bethany

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Burdon, Kathryn P

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Mackey, David A

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Allen, Keri F

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Ruddle, Jonathan B

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Lim, Sing-Hui

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Rozen, Steve

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Tran-Viet, Khanh-Nhat

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Liu, Xiaorong

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John, Simon

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Wiggs, Janey L

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Pasutto, Francesca

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Craig, Jamie E

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Jin, Jing

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Quaggin, Susan E

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Young, Terri L

dc.date.accessioned

2018-05-01T15:18:08Z

dc.date.available

2018-05-01T15:18:08Z

dc.date.issued

2016-07

dc.date.updated

2018-05-01T15:18:05Z

dc.description.abstract

Primary congenital glaucoma (PCG) is a devastating eye disease and an important cause of childhood blindness worldwide. In PCG, defects in the anterior chamber aqueous humor outflow structures of the eye result in elevated intraocular pressure (IOP); however, the genes and molecular mechanisms involved in the etiology of these defects have not been fully characterized. Previously, we observed PCG-like phenotypes in transgenic mice that lack functional angiopoietin-TEK signaling. Herein, we identified rare TEK variants in 10 of 189 unrelated PCG families and demonstrated that each mutation results in haploinsufficiency due to protein loss of function. Multiple cellular mechanisms were responsible for the loss of protein function resulting from individual TEK variants, including an absence of normal protein production, protein aggregate formation, enhanced proteasomal degradation, altered subcellular localization, and reduced responsiveness to ligand stimulation. Further, in mice, hemizygosity for Tek led to the formation of severely hypomorphic Schlemm's canal and trabecular meshwork, as well as elevated IOP, demonstrating that anterior chamber vascular development is sensitive to Tek gene dosage and the resulting decrease in angiopoietin-TEK signaling. Collectively, these results identify TEK mutations in patients with PCG that likely underlie disease and are transmitted in an autosomal dominant pattern with variable expressivity.

dc.identifier.issn

0021-9738

dc.identifier.issn

1558-8238

dc.identifier.uri

https://hdl.handle.net/10161/16648

dc.language

eng

dc.publisher

American Society for Clinical Investigation

dc.relation.ispartof

The Journal of clinical investigation

dc.relation.isversionof

10.1172/jci85830

dc.subject

Trabecular Meshwork

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Animals

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Mice, Transgenic

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Mice, Knockout

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Humans

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Mice

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Glaucoma

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Receptor, TIE-2

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Angiopoietins

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Ligands

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Pedigree

dc.subject

Signal Transduction

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Gene Expression Regulation

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Phosphorylation

dc.subject

Intraocular Pressure

dc.subject

Gene Dosage

dc.subject

Phenotype

dc.subject

Mutation

dc.subject

Mutation, Missense

dc.subject

Family Health

dc.subject

Exome

dc.title

Angiopoietin receptor TEK mutations underlie primary congenital glaucoma with variable expressivity.

dc.type

Journal article

duke.contributor.orcid

Souma, Tomokazu|0000-0002-3285-8613

duke.contributor.orcid

Rozen, Steve|0000-0002-4288-0056

duke.contributor.orcid

Young, Terri L|0000-0001-6994-9941

pubs.issue

7

pubs.organisational-group

School of Medicine

pubs.organisational-group

Duke

pubs.organisational-group

Psychiatry & Behavioral Sciences, Translational Neuroscience

pubs.organisational-group

Psychiatry & Behavioral Sciences

pubs.organisational-group

Clinical Science Departments

pubs.organisational-group

Ophthalmology

pubs.organisational-group

Medicine, Nephrology

pubs.organisational-group

Medicine

pubs.publication-status

Published

pubs.volume

126

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