This subproject is one of many research subprojects utilizing the resources provided by a Center grant funded by NIH/NCRR. The subproject and investigator (PI) may have received primary funding from another NIH source, and thus could be represented in other CRISP entries. The institution listed is for the Center, which is not necessarily the institution for the investigator. Tissue factor pathway inhibitor (TFPI) blocks activation of factors X (FX) and IX by the tissue factorfactor VIIa (TF-FVIIa) complex. The observation that TFPI gene deletion results in embryonic lethality caused in part by a coagulopathy demonstrates the physiological importance of TFPI. In vitro, effective TFVIIa inhibition by soluble TFPI requires the product, factor Xa, to bind to TFPI, concentrating TFPI on negatively charged membrane surfaces and facilitating inhibition of TF-FVIIa. In vivo, most of the TFPI is associated with endothelial cells (EC) where it is ideally situated to regulate TF-FVIIa activity, perhaps circumventing the need for FXa concentrating effect. Cellular TFPI exists in at least two pools, one bound reversibly to unidentified 'receptors', and another probably mediated by a glycosyl phosphatidylinositol (GPI) anchor (i.e. sensitive to phospholipase C). The goal of this application is to determine the mechanisms by which TFPI associates with membrane surfaces. Although TFPI is released from EC by phospholipase C, TFPI lacks the classical membrane spanning sequence found in other GPI anchored proteins, suggesting either a novel GPI attachment mechanism or binding through a GPI anchored TFPI receptor. To address this, TFPI will be isolated from human placenta or cultured EC by immunoaffinity chromatography. Hydrophobic forms indicative of GPI anchorage will be separated by reversed phase HPLC, enzymatically digested and analyzed by mass spectrometry to identify the GPI-linked peptide. We will also isolate candidate TFPI receptors by affinity chromatography on immobilized TFPI. Detergent extracts from placenta or cultured EC will be used as a source for putative receptors. Bound proteins will be separated, tested for TFPI binding activity, subjected to micro sequencing and identified by searching databases. Potential GPI anchorage will be tested as described above. Finally, after classical sequences for GPI attachment or transmembrane domains are fused to the C-terminal region of TFPI, the impact of this modification on TF-FVIIa inhibition and the cellular distribution of the mutants will be studied. If successful, these studies will provide novel data about the role and mechanism of function of cell-bound TFPI in controlling the activity of TF in various pathological conditions.

Agency
National Institute of Health (NIH)
Institute
National Center for Research Resources (NCRR)
Type
Exploratory Grants (P20)
Project #
5P20RR018758-04
Application #
7382046
Study Section
Special Emphasis Panel (ZRR1-RI-5 (01))
Project Start
2006-07-01
Project End
2007-06-30
Budget Start
2006-07-01
Budget End
2007-06-30
Support Year
4
Fiscal Year
2006
Total Cost
$281,918
Indirect Cost
Name
Oklahoma Medical Research Foundation
Department
Type
DUNS #
077333797
City
Oklahoma City
State
OK
Country
United States
Zip Code
73104
Dong, Jerry; Saunders, Debra; Silasi-Mansat, Robert et al. (2018) Therapeutic efficacy of a synthetic epsin mimetic peptide in glioma tumor model: uncovering multiple mechanisms beyond the VEGF-associated tumor angiogenesis. J Neurooncol 138:17-27
Donovan, Elise L; Lopes, Erika Barboza Prado; Batushansky, Albert et al. (2018) Independent effects of dietary fat and sucrose content on chondrocyte metabolism and osteoarthritis pathology in mice. Dis Model Mech 11:
Keshari, Ravi S; Silasi, Robert; Lupu, Cristina et al. (2017) In vivo-generated thrombin and plasmin do not activate the complement system in baboons. Blood 130:2678-2681
Dong, Yunzhou; Fernandes, Conrad; Liu, Yanjun et al. (2017) Role of endoplasmic reticulum stress signalling in diabetic endothelial dysfunction and atherosclerosis. Diab Vasc Dis Res 14:14-23
Barboza, Erika; Hudson, Joanna; Chang, Wan-Pin et al. (2017) Profibrotic Infrapatellar Fat Pad Remodeling Without M1 Macrophage Polarization Precedes Knee Osteoarthritis in Mice With Diet-Induced Obesity. Arthritis Rheumatol 69:1221-1232
Bergstrom, K; Fu, J; Johansson, M E V et al. (2017) Core 1- and 3-derived O-glycans collectively maintain the colonic mucus barrier and protect against spontaneous colitis in mice. Mucosal Immunol 10:91-103
Bergstrom, Kirk; Liu, Xiaowei; Zhao, Yiming et al. (2016) Defective Intestinal Mucin-Type O-Glycosylation Causes Spontaneous Colitis-Associated Cancer in Mice. Gastroenterology 151:152-164.e11
Fu, Yao; Huebner, Janet L; Kraus, Virginia B et al. (2016) Effect of Aging on Adipose Tissue Inflammation in the Knee Joints of F344BN Rats. J Gerontol A Biol Sci Med Sci 71:1131-40
Rahman, H N Ashiqur; Wu, Hao; Dong, Yunzhou et al. (2016) Selective Targeting of a Novel Epsin-VEGFR2 Interaction Promotes VEGF-Mediated Angiogenesis. Circ Res 118:957-969
Fu, Yao; Kinter, Michael; Hudson, Joanna et al. (2016) Aging Promotes Sirtuin 3-Dependent Cartilage Superoxide Dismutase 2 Acetylation and Osteoarthritis. Arthritis Rheumatol 68:1887-98

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