4.8 Article

Angiopoietin receptor TEK mutations underlie primary congenital glaucoma with variable expressivity

期刊

JOURNAL OF CLINICAL INVESTIGATION
卷 126, 期 7, 页码 2575-2587

出版社

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI85830

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资金

  1. NIH [R01 HL124120, R01 EY014685, 1K23EY020554]
  2. Research to Prevent Blindness Inc.
  3. Duke National University of Singapore
  4. University of Wisconsin
  5. March of Dimes Foundation
  6. Howard Hughes Medical Center
  7. Ophthalmic Research Institute of Australia
  8. Channel Seven Children's Research Foundation
  9. Department of Innovation, Industry, Science and Research
  10. National Health and Medical Research Council of Australia (NHMRC)
  11. Japan Society for the Promotion of Science
  12. Mallinckrodt Pharmaceuticals
  13. Canadian Institute of Health Research
  14. NHMRC
  15. NCI CCSG [P30 CA060553]
  16. University of Wisconsin-Madison Department of Ophthalmology and Visual Sciences [NEI P30EY016665]
  17. [EY 11721]

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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.

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