We have determined that human platelets and megakaryocytes have receptors for the Pc portion of IgG encoded by the FcgammaRIIA gene. Engagement of the platelet Fcgamma receptor by immune complexes and anti-platelet antibodies leads to accelerated platelet clearance and platelet activation, the release of biologically active products and thrombosis. Therapy to intervene in these pathologic processes will require understanding the regulation of receptor expression level and the mechanism of the transmission of the receptor's activation signals. The goal of this research project is to gain a greater understanding of the biologic role of the platelet Fcgamma receptor in platelet activation. The first specific aim examines the regulation of expression of the platelet Fcgamma receptor. Alterations in the level of platelet surface FcgammaRIIA expression leads to alterations in receptor mediated activation of platelets. We have identified cis-acting sequences and trans-acting factors important for FcgammaRIIA basal transcription and will identify those responsible for the modulation of FcgammaRIIA transcription by cytokines and glucocorticoids using reporter gene assays in megakaryotic cells. Our transgenic mouse model will enable determination of the effect of these regulatory molecule on platelet FcgammaRIIA expression in vivo. The second specific aim examines structure/function relationships in platelet/megakaryocyte Fcgamma receptor signaling. FcgammaRIIA has three cytoplasmic tyrosines in an ITAM-(immunoreceptor tyrosine-based activation motif)-like sequence. We have established that all three cytoplasmic tyrosines and the tyrosine kinase Syk are important in the early events following receptor crosslinking. Syk antisense oligodeoxynucleotides will be used to identify the effect of Syk ablation on protein tyrosine phosphorylation and Ca2+ signaling in megakaryocytic cells. These signal transduction events will be studied in megakaryocytic cells transfected with wild-type and mutant FcgammaRIIA cytoplasmic domain sequences. We will also use platelets from our FcgammaRIIA transgenic mice to study the FcgammaRIIA mediated secretory response. Finally, the third specific aim examines the role of FcgammaRIIA in platelet clearance and activation in vivo. Our hypothesis is that the expression of human FcgammaRIIA leads to more extensive thrombocytopenia triggered by anti-platelet antibodies and by immune complexes and to enhanced intravascular platelet activation. Following challenge with anti-platelet antibody and immune complex, platelet counts and a marker of intravascular platelet activation in our FcgammaRIIA transgenic mice will be compared to wild-type mice and mice expressing FcgammaRIIA only in platelets.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Program Projects (P01)
Project #
5P01HL040387-12
Application #
6109912
Study Section
Project Start
1999-04-01
Project End
2000-03-31
Budget Start
1998-10-01
Budget End
1999-09-30
Support Year
12
Fiscal Year
1999
Total Cost
Indirect Cost
Name
University of Pennsylvania
Department
Type
DUNS #
042250712
City
Philadelphia
State
PA
Country
United States
Zip Code
19104
Capitano, Maegan; Zhao, Liang; Cooper, Scott et al. (2018) Phosphatidylinositol transfer proteins regulate megakaryocyte TGF-?1 secretion and hematopoiesis in mice. Blood 132:1027-1038
Branchford, B R; Stalker, T J; Law, L et al. (2018) The small-molecule MERTK inhibitor UNC2025 decreases platelet activation and prevents thrombosis. J Thromb Haemost 16:352-363
Zhao, Baobing; Mei, Yang; Cao, Lan et al. (2018) Loss of pleckstrin-2 reverts lethality and vascular occlusions in JAK2V617F-positive myeloproliferative neoplasms. J Clin Invest 128:125-140
Khandelwal, Sanjay; Ravi, Joann; Rauova, Lubica et al. (2018) Polyreactive IgM initiates complement activation by PF4/heparin complexes through the classical pathway. Blood 132:2431-2440
Villa, Carlos H; Pan, Daniel C; Johnston, Ian H et al. (2018) Biocompatible coupling of therapeutic fusion proteins to human erythrocytes. Blood Adv 2:165-176
Ma, Peisong; Gupta, Shuchi; Sampietro, Sara et al. (2018) RGS10 shapes the hemostatic response to injury through its differential effects on intracellular signaling by platelet agonists. Blood Adv 2:2145-2155
Gupta, Shuchi; Cherpokova, Deya; Spindler, Markus et al. (2018) GPVI signaling is compromised in newly formed platelets after acute thrombocytopenia in mice. Blood 131:1106-1110
Xie, Zhigang; Hur, Seong Kwon; Zhao, Liang et al. (2018) A Golgi Lipid Signaling Pathway Controls Apical Golgi Distribution and Cell Polarity during Neurogenesis. Dev Cell 44:725-740.e4
Tomaiuolo, Maurizio; Brass, Lawrence F; Stalker, Timothy J (2017) Regulation of Platelet Activation and Coagulation and Its Role in Vascular Injury and Arterial Thrombosis. Interv Cardiol Clin 6:1-12
Shen, Jian; Sampietro, Sara; Wu, Jie et al. (2017) Coordination of platelet agonist signaling during the hemostatic response in vivo. Blood Adv 1:2767-2775

Showing the most recent 10 out of 290 publications