vonWillebrand factor (vWf) is involved in attachment of platelets to subendothelium following vasuclar injury. Deficiency or structural defects in the protein result in a bleeding disorder called von Willebrand disease. vWf is synthesized by endothelial cells first as a large precursor polypeptide chain (pro-vWf) which then undergoes cleavage and multimerization by disulfide bond formation. The multimers can be secreted from the endothelial cells either constitutively or through a requlated pathway from storage granules called Weibel-Palade bodies. Only the largest and biologically most active multimers are released from the Weibel-Palade bodies after stimulation. The major aims of the proposed research are: a) to investigate the mechanisms of vWf multimerization. Free sulfhydryls will be localized on the pro- vWf subunit and the possibility of multimerization by direct oxidation of the free sulfhydrys will be evaluated. We will clarify the role of acidic pH in the Trans Golgi apparatus in the multimerization process and investigate the function of the very large prosequence of vWf. Both the low pH conditions and the presence of the propeptide appear to be necessary for the successful multimerization of the protein. b) to study the storage and secretion of vWf by endothelial cells. We will search for the recognition element that directs the protein into secretory granules and localize it on the pro-vWf subunit. We will examine if the concentration of vWf in the secretory granules promotes multimerization and if this process coincides with the formation of tubular structures such as those seen in Weibel-Palade bodies. The partioning of vWf between the constitutive and regulated pathways of secretion and the polarity of secretion (basolateral:apical) from endothelial cells will be investigated. c) to define the interactions of vWf with extracellular matrix. During the first stages of hemostasis, vWf links the platelet glycoprotein 1b to an unknown noncollagenous component of the subendothelium. We will identify the binding site for vWf in the extracellular matrix (the in vitro model od subendothelium) and characterize the structure and possible covalent interactions of vWf in the extracellular matrix. Specific procedures in this proposal include: metabolic labelling of cultured human umbilical vein endothelial cells, weak base inhibition of multimerization, isolation of Golgi apparatus and Weibel-Palade bodies rich fractions, in vitro assay for multimerization of dimeric vWf, induction of vWf release from Weibel-Palade bodies by Ca++ ionophore, derivatization of vWf with a bifunctional radioactive crosslinker and expression of full and partial length c-DNA for vWf in AtT-20 secretory cells. The understanding of basic cellular processes involving vWf should provide explanations for molecular defects in von Willebrand disease and for the role of vWf in hemostatic plugs and atherosclerotic lesions.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
5R01HL041002-04
Application #
3358436
Study Section
Hematology Subcommittee 2 (HEM)
Project Start
1988-07-01
Project End
1993-06-30
Budget Start
1991-07-01
Budget End
1992-06-30
Support Year
4
Fiscal Year
1991
Total Cost
Indirect Cost
Name
Tufts University
Department
Type
DUNS #
City
Boston
State
MA
Country
United States
Zip Code
02111
Thålin, Charlotte; Demers, Melanie; Blomgren, Bo et al. (2016) NETosis promotes cancer-associated arterial microthrombosis presenting as ischemic stroke with troponin elevation. Thromb Res 139:56-64
Savchenko, Alexander S; Borissoff, Julian I; Martinod, Kimberly et al. (2014) VWF-mediated leukocyte recruitment with chromatin decondensation by PAD4 increases myocardial ischemia/reperfusion injury in mice. Blood 123:141-8
Martinod, Kimberly; Wagner, Denisa D (2014) Thrombosis: tangled up in NETs. Blood 123:2768-76
Suidan, Georgette L; Brill, Alexander; De Meyer, Simon F et al. (2013) Endothelial Von Willebrand factor promotes blood-brain barrier flexibility and provides protection from hypoxia and seizures in mice. Arterioscler Thromb Vasc Biol 33:2112-20
Brill, A; Suidan, G L; Wagner, D D (2013) Hypoxia, such as encountered at high altitude, promotes deep vein thrombosis in mice. J Thromb Haemost 11:1773-5
Duerschmied, Daniel; Suidan, Georgette L; Demers, Melanie et al. (2013) Platelet serotonin promotes the recruitment of neutrophils to sites of acute inflammation in mice. Blood 121:1008-15
Suidan, Georgette L; Duerschmied, Daniel; Dillon, Gregory M et al. (2013) Lack of tryptophan hydroxylase-1 in mice results in gait abnormalities. PLoS One 8:e59032
Martinod, Kimberly; Demers, Melanie; Fuchs, Tobias A et al. (2013) Neutrophil histone modification by peptidylarginine deiminase 4 is critical for deep vein thrombosis in mice. Proc Natl Acad Sci U S A 110:8674-9
Carbo, Carla; Yuki, Koichi; Demers, Melanie et al. (2013) Isoflurane inhibits neutrophil recruitment in the cutaneous Arthus reaction model. J Anesth 27:261-8
De Meyer, Simon F; Stoll, Guido; Wagner, Denisa D et al. (2012) von Willebrand factor: an emerging target in stroke therapy. Stroke 43:599-606

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