Angiopoietin receptor TEK mutations underlie primary congenital glaucoma with variable expressivity

التفاصيل البيبلوغرافية
العنوان: Angiopoietin receptor TEK mutations underlie primary congenital glaucoma with variable expressivity
المؤلفون: Francesca Pasutto, Steve Rozen, Keri F. Allen, Terri L. Young, Shahrbanou Javadiyan, Tiger Zhou, Tomokazu Souma, Stuart W. Tompson, Kathryn P. Burdon, Kristina N. Whisenhunt, Simone Finzi, Khanh Nhat Tran-Viet, Shinji Yamaguchi, David A. Mackey, Jing Jin, Dimitar N. Azmanov, Sing Hui Lim, Sebastian Maurer-Stroh, Bethany A. Kloss, Alex W. Hewitt, Jonathan B Ruddle, Janey L. Wiggs, Krishnakumar Kizhatil, Jamie E Craig, Benjamin R. Thomson, Emmanuelle Souzeau, Susan E. Quaggin, Luba Kalaydjieva, Simon W. M. John, Xiaorong Liu, Vachiranee Limviphuvadh, Lucia Mauri, Owen M. Siggs, Tammy L. Yanovitch, Liang Feng
المساهمون: School of Biological Sciences
المصدر: The Journal of clinical investigation. 126(7)
سنة النشر: 2015
مصطلحات موضوعية: 0301 basic medicine, Pathology, genetic structures, Gene Dosage, Glaucoma, medicine.disease_cause, Ligands, Mice, Medicine, Missense mutation, Exome, Phosphorylation, Mice, Knockout, Mutation, biology, General Medicine, Angiopoietin receptor, Receptor, TIE-2, Cell biology, Pedigree, medicine.anatomical_structure, Phenotype, primary congenital glaucoma, Haploinsufficiency, Signal Transduction, Research Article, medicine.medical_specialty, CYP1B1, Mutation, Missense, Mice, Transgenic, 03 medical and health sciences, angiopoietin receptor TEK, Trabecular Meshwork, Animals, Humans, Loss function, Intraocular Pressure, Family Health, business.industry, medicine.disease, eye diseases, 030104 developmental biology, Gene Expression Regulation, biology.protein, Trabecular meshwork, sense organs, business, Angiopoietins
الوصف: 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. Published version
وصف الملف: application/pdf
تدمد: 1558-8238
الوصول الحر: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::1fdc4703ba7fd7930ce3ff130d9e61b1Test
https://pubmed.ncbi.nlm.nih.gov/27270174Test
حقوق: OPEN
رقم الانضمام: edsair.doi.dedup.....1fdc4703ba7fd7930ce3ff130d9e61b1
قاعدة البيانات: OpenAIRE