Literature DB >> 26319232

Common and specific effects of TIE2 mutations causing venous malformations.

Marjut Nätynki1, Jaakko Kangas1, Ilkka Miinalainen2, Raija Sormunen3, Riikka Pietilä1, Julie Soblet4, Laurence M Boon5, Miikka Vikkula4, Nisha Limaye4, Lauri Eklund6.   

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.
© The Author 2015. Published by Oxford University Press. All rights reserved. For Permissions, please email: journals.permissions@oup.com.

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Year:  2015        PMID: 26319232      PMCID: PMC4614705          DOI: 10.1093/hmg/ddv349

Source DB:  PubMed          Journal:  Hum Mol Genet        ISSN: 0964-6906            Impact factor:   6.150


  53 in total

1.  Autocrine fibronectin directs matrix assembly and crosstalk between cell-matrix and cell-cell adhesion in vascular endothelial cells.

Authors:  Botond Cseh; Samantha Fernandez-Sauze; Dominique Grall; Sébastien Schaub; Eszter Doma; Ellen Van Obberghen-Schilling
Journal:  J Cell Sci       Date:  2010-10-27       Impact factor: 5.285

2.  Hereditary cutaneomucosal venous malformations are caused by TIE2 mutations with widely variable hyper-phosphorylating effects.

Authors:  Vinciane Wouters; Nisha Limaye; Melanie Uebelhoer; Alexandre Irrthum; Laurence M Boon; John B Mulliken; Odile Enjolras; Eulalia Baselga; Jonathan Berg; Anne Dompmartin; Sten A Ivarsson; Loshan Kangesu; Yves Lacassie; Jill Murphy; Ahmad S Teebi; Anthony Penington; Paul Rieu; Miikka Vikkula
Journal:  Eur J Hum Genet       Date:  2009-11-04       Impact factor: 4.246

3.  Angiopoietin-1 regulates endothelial cell survival through the phosphatidylinositol 3'-Kinase/Akt signal transduction pathway.

Authors:  I Kim; H G Kim; J N So; J H Kim; H J Kwak; G Y Koh
Journal:  Circ Res       Date:  2000 Jan 7-21       Impact factor: 17.367

4.  Fibronectins are essential for heart and blood vessel morphogenesis but are dispensable for initial specification of precursor cells.

Authors:  E L George; H S Baldwin; R O Hynes
Journal:  Blood       Date:  1997-10-15       Impact factor: 22.113

5.  Angiopoietin-1 is essential in mouse vasculature during development and in response to injury.

Authors:  Marie Jeansson; Alexander Gawlik; Gregory Anderson; Chengjin Li; Dontscho Kerjaschki; Mark Henkelman; Susan E Quaggin
Journal:  J Clin Invest       Date:  2011-05-23       Impact factor: 14.808

6.  Identification of Tek/Tie2 binding partners. Binding to a multifunctional docking site mediates cell survival and migration.

Authors:  N Jones; Z Master; J Jones; D Bouchard; Y Gunji; H Sasaki; R Daly; K Alitalo; D J Dumont
Journal:  J Biol Chem       Date:  1999-10-22       Impact factor: 5.157

7.  Intracellular retention, degradation, and signaling of glycosylation-deficient FGFR2 and craniosynostosis syndrome-associated FGFR2C278F.

Authors:  Nan E Hatch; Mark Hudson; Marianne L Seto; Michael L Cunningham; Mark Bothwell
Journal:  J Biol Chem       Date:  2006-07-14       Impact factor: 5.157

8.  Angiogenic and prothrombotic markers in extensive slow-flow vascular malformations: implications for antiangiogenic/antithrombotic strategies.

Authors:  P Redondo; L Aguado; M Marquina; J A Paramo; A Sierra; A Sánchez-Ibarrola; A Martínez-Cuesta; J Cabrera
Journal:  Br J Dermatol       Date:  2009-09-21       Impact factor: 9.302

9.  Elevated D-dimer level in the differential diagnosis of venous malformations.

Authors:  Anne Dompmartin; Fanny Ballieux; Pascal Thibon; Agnès Lequerrec; Cédric Hermans; Philippe Clapuyt; Marie-Thérèse Barrellier; Franck Hammer; Daniel Labbé; Miikka Vikkula; Laurence M Boon
Journal:  Arch Dermatol       Date:  2009-11

10.  Polyoma middle T-induced vascular tumor formation: the role of the plasminogen activator/plasmin system.

Authors:  K T Sabapathy; M S Pepper; F Kiefer; U Möhle-Steinlein; F Tacchini-Cottier; I Fetka; G Breier; W Risau; P Carmeliet; R Montesano; E F Wagner
Journal:  J Cell Biol       Date:  1997-05-19       Impact factor: 10.539

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  23 in total

Review 1.  New and Emerging Targeted Therapies for Vascular Malformations.

Authors:  An Van Damme; Emmanuel Seront; Valérie Dekeuleneer; Laurence M Boon; Miikka Vikkula
Journal:  Am J Clin Dermatol       Date:  2020-10       Impact factor: 7.403

2.  Diagnostic Utility of Next-Generation Sequencing for Disorders of Somatic Mosaicism: A Five-Year Cumulative Cohort.

Authors:  Samantha N McNulty; Michael J Evenson; Meagan M Corliss; Latisha D Love-Gregory; Molly C Schroeder; Yang Cao; Yi-Shan Lee; Beth A Drolet; Julie A Neidich; Catherine E Cottrell; Jonathan W Heusel
Journal:  Am J Hum Genet       Date:  2019-10-03       Impact factor: 11.025

3.  Angiopoietin-4-dependent venous maturation and fluid drainage in the peripheral retina.

Authors:  Harri Elamaa; Minna Kihlström; Emmi Kapiainen; Mika Kaakinen; Ilkka Miinalainen; Symantas Ragauskas; Marc Cerrada-Gimenez; Satu Mering; Marjut Nätynki; Lauri Eklund
Journal:  Elife       Date:  2018-11-16       Impact factor: 8.140

Review 4.  Therapeutic targeting of the angiopoietin-TIE pathway.

Authors:  Pipsa Saharinen; Lauri Eklund; Kari Alitalo
Journal:  Nat Rev Drug Discov       Date:  2017-05-19       Impact factor: 84.694

5.  Somatic PIK3CA mutations as a driver of sporadic venous malformations.

Authors:  Pau Castel; F Javier Carmona; Joaquim Grego-Bessa; Michael F Berger; Agnès Viale; Kathryn V Anderson; Silvia Bague; Maurizio Scaltriti; Cristina R Antonescu; Eulàlia Baselga; José Baselga
Journal:  Sci Transl Med       Date:  2016-03-30       Impact factor: 17.956

6.  Somatic Activating PIK3CA Mutations Cause Venous Malformation.

Authors:  Nisha Limaye; Jaakko Kangas; Antonella Mendola; Catherine Godfraind; Matthieu J Schlögel; Raphael Helaers; Lauri Eklund; Laurence M Boon; Miikka Vikkula
Journal:  Am J Hum Genet       Date:  2015-12-03       Impact factor: 11.025

7.  Tie1 controls angiopoietin function in vascular remodeling and inflammation.

Authors:  Emilia A Korhonen; Anita Lampinen; Hemant Giri; Andrey Anisimov; Minah Kim; Breanna Allen; Shentong Fang; Gabriela D'Amico; Tuomas J Sipilä; Marja Lohela; Tomas Strandin; Antti Vaheri; Seppo Ylä-Herttuala; Gou Young Koh; Donald M McDonald; Kari Alitalo; Pipsa Saharinen
Journal:  J Clin Invest       Date:  2016-08-22       Impact factor: 14.808

8.  Endothelial k-RasV12 Expression Induces Capillary Deficiency Attributable to Marked Tube Network Expansion Coupled to Reduced Pericytes and Basement Membranes.

Authors:  Zheying Sun; Scott S Kemp; Prisca K Lin; Kalia N Aguera; George E Davis
Journal:  Arterioscler Thromb Vasc Biol       Date:  2021-12-09       Impact factor: 8.311

Review 9.  A review of mechanisms of disease across PIK3CA-related disorders with vascular manifestations.

Authors:  Guillaume Canaud; Adrienne M Hammill; Denise Adams; Miikka Vikkula; Kim M Keppler-Noreuil
Journal:  Orphanet J Rare Dis       Date:  2021-07-08       Impact factor: 4.123

10.  Somatic activating mutations in Pik3ca cause sporadic venous malformations in mice and humans.

Authors:  Sandra D Castillo; Elena Tzouanacou; May Zaw-Thin; Inma M Berenjeno; Victoria E R Parker; Iñigo Chivite; Maria Milà-Guasch; Wayne Pearce; Isabelle Solomon; Ana Angulo-Urarte; Ana M Figueiredo; Robert E Dewhurst; Rachel G Knox; Graeme R Clark; Cheryl L Scudamore; Adam Badar; Tammy L Kalber; Julie Foster; Daniel J Stuckey; Anna L David; Wayne A Phillips; Mark F Lythgoe; Valerie Wilson; Robert K Semple; Neil J Sebire; Veronica A Kinsler; Mariona Graupera; Bart Vanhaesebroeck
Journal:  Sci Transl Med       Date:  2016-03-30       Impact factor: 17.956

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