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Common and specific effects of TIE2 mutations causing venous malformations

Authors :
Miikka Vikkula
Laurence M. Boon
Raija Sormunen
Riikka Pietilä
Nisha Limaye
Jaakko Kangas
Ilkka Miinalainen
Marjut Nätynki
Lauri Eklund
Julie Soblet
Source :
Human Molecular Genetics. 24:6374-6389
Publication Year :
2015
Publisher :
Oxford University Press (OUP), 2015.

Abstract

Venous malformations (VMs) are localized defects in vascular morphogenesis frequently caused by mutations in the gene for the endothelial tyrosine kinase receptor TIE2. Here, we report the analysis of a comprehensive collection of 22 TIE2 mutations identified in patients with VM, either as single amino acid substitutions or as double-mutations on the same allele. Using endothelial cell (EC) cultures, mouse models and ultrastructural analysis of tissue biopsies from patients, we demonstrate common as well as mutation-specific cellular and molecular features, on the basis of which mutations cluster into categories that correlate with data from genetic studies. Comparisons of double-mutants with their constituent single-mutant forms identified the pathogenic contributions of individual changes, and their compound effects. We find that defective receptor trafficking and subcellular localization of different TIE2 mutant forms occur via a variety of mechanisms, resulting in attenuated response to ligand. We also demonstrate, for the first time, that TIE2 mutations cause chronic activation of the MAPK pathway resulting in loss of normal EC monolayer due to extracellular matrix (ECM) fibronectin deficiency and leading to upregulation of plasminogen/plasmin proteolytic pathway. Corresponding EC and ECM irregularities are observed in affected tissues from mouse models and patients. Importantly, an imbalance between plasminogen activators versus inhibitors would also account for high d-dimer levels, a major feature of unknown cause that distinguishes VMs from other vascular anomalies.

Details

ISSN :
14602083 and 09646906
Volume :
24
Database :
OpenAIRE
Journal :
Human Molecular Genetics
Accession number :
edsair.doi.dedup.....4569b206aa568ebfcbcbd7f1eb3fdc41
Full Text :
https://doi.org/10.1093/hmg/ddv349