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  von Willebrand Factor Directly Interacts With DNA From Neutrophil Extracellular Traps

Grässle, S., Huck, V., Pappelbaum, K. I., Gorzelanny, C., Aponte-Santamaría, C., Baldauf, C., et al. (2014). von Willebrand Factor Directly Interacts With DNA From Neutrophil Extracellular Traps. Arteriosclerosis, Thrombosis, and Vascular Biology: an Official Journal of the American Heart Association, 34(7), 1382-1389. doi:10.1161/ATVBAHA.113.303016.

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 Creators:
Grässle, Sandra1, Author
Huck, Volker1, Author
Pappelbaum, Karin I.1, Author
Gorzelanny, Christian1, Author
Aponte-Santamaría, Camilo2, Author
Baldauf, Carsten3, Author           
Gräter, Frauke2, Author
Schneppenheim, Reinhard4, Author
Obser, Tobias4, Author
Schneider, Stefan W.1, Author
Affiliations:
1Experimental Dermatology Division, Department of Dermatology, Medical Faculty Mannheim, Heidelberg University, Mannheim, Germany , ou_persistent22              
2Molecular Biomechanics Group, Heidelberg Institute for Theoretical Studies, Heidelberg, Germany, ou_persistent22              
3Theory, Fritz Haber Institute, Max Planck Society, ou_634547              
4Department of Pediatric Hematology and Oncology, University Medical Center, Hamburg-Eppendorf, Hamburg, Germany, ou_persistent22              

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Free keywords: endothelium heparin inflammation leukocytes von Willebrand factor
 Abstract: Objective—Inflammatory conditions provoke essential processes in the human vascular system. It leads to the formation of ultralarge von Willebrand factor (VWF) fibers, which are immobilized on the endothelial cell surface and transform to highly adhesive strings under shear conditions. Furthermore, leukocytes release a meshwork of DNA (neutrophil extracellular traps) during the process of the recently discovered cell death program NETosis. In the present study, we characterized the interaction between VWF and DNA and possible binding sites to underline the role of VWF in thrombosis and inflammation besides its function in platelet adhesion. Approach and Results—Both functionalized surfaces and intact cell layers of human umbilical vein endothelial cells were perfused with isolated, protein-free DNA or leukocytes from whole blood at distinct shear rates. DNA–VWF interaction was monitored using fluorescence microscopy, ELISA-based assays, molecular dynamics simulations, and electrostatic potential calculations. Isolated DNA, as well as DNA released by stimulated leukocytes, was able to bind to shear-activated, but not inactivated, VWF. However, DNA–VWF binding does not alter VWF degradation by a disintegrin and metalloproteinase with a thrombospondin type 1 motif, member 13. Moreover, DNA–VWF interaction can be blocked using unfractionated and low-molecular-weight heparin, and DNA–VWF complexes attenuate platelet binding to VWF. These findings were supported using molecular dynamics simulations and electrostatic calculations of the A1- and A2-domains. Conclusions—Our findings suggest that VWF directly binds and immobilizes extracellular DNA released from leukocytes. Therefore, we hypothesize that VWF might act as a linker for leukocyte adhesion to endothelial cells, supporting leukocyte extravasation and inflammation.

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Language(s): eng - English
 Dates: 2013-12-092014-04-162014-05-012014-07
 Publication Status: Issued
 Pages: 8
 Publishing info: -
 Table of Contents: -
 Rev. Type: Peer
 Identifiers: DOI: 10.1161/ATVBAHA.113.303016
 Degree: -

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Title: Arteriosclerosis, Thrombosis, and Vascular Biology : an Official Journal of the American Heart Association
  Other : Arterioscleorosis (Dallas)
Source Genre: Journal
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Publ. Info: Philadelphia, PA : Lippincott, Williams & Wilkins
Pages: - Volume / Issue: 34 (7) Sequence Number: - Start / End Page: 1382 - 1389 Identifier: ISSN: 1079-5642
CoNE: https://pure.mpg.de/cone/journals/resource/954927718420