Choline-containing phospholipids serve as precursors for lipid-derived messenger molecules that function as both intra and extracellular signals. This proposal focuses on two pivotal enzymes in this signaling system: phosphatidylcholine-specific phospholipases D (PLD) and phosphatidic acid phosphohydrolases (PAP). Activation of PLD is a widespread reaction of diverse cell types to stimulation with a wide range of agonists and thereby implicated in a broad spectrum of physiological processes including cell growth and differentiation, metabolic regulation and the immune and inflammatory responses. Understanding the regulation and functions of this signaling system could lead to new therapies for treatment of diseases where these processes are aberrantly regulated or inappropriately activated. We have cloned cDNAs encoding mammalian PLD (PLD1 and PLD2 and PLD3) and type-2 PAP enzymes (PAP2a, 2b 2c and 2d). We hypothesize that these enzymes are responsible for synthesis of two lipid mediators: Diacylglycerol (DG) for activation of conventional PKC isoenzymes and the G-protein-coupled receptor ligand lysophosphatidic acid (LPA). We propose a series of experiments to test these hypotheses. Both series of studies share a common design. The potential involvement of the PLD and PAP enzymes in DG and LPA synthesis will be explored by transient transfection of HEK293 cells. Building on the results of these experiments we describe strategies for inhibition or suppression of the endogenously expressed enzymes in model cell lines to determine their normal roles in synthesis of these important lipid mediators.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
7R01GM050388-07
Application #
6495552
Study Section
Pharmacology A Study Section (PHRA)
Program Officer
Cole, Alison E
Project Start
1994-08-01
Project End
2003-11-30
Budget Start
2001-07-01
Budget End
2001-11-30
Support Year
7
Fiscal Year
2001
Total Cost
$116,703
Indirect Cost
Name
University of North Carolina Chapel Hill
Department
Anatomy/Cell Biology
Type
Schools of Medicine
DUNS #
078861598
City
Chapel Hill
State
NC
Country
United States
Zip Code
27599
Subramanian, Thangaiah; Ren, Hongmei; Subramanian, Karunai Leela et al. (2014) Design and synthesis of non-hydrolyzable homoisoprenoid ?-monofluorophosphonate inhibitors of PPAPDC family integral membrane lipid phosphatases. Bioorg Med Chem Lett 24:4414-4417
Wu, Tao; Kooi, Craig Vander; Shah, Pritom et al. (2014) Integrin-mediated cell surface recruitment of autotaxin promotes persistent directional cell migration. FASEB J 28:861-70
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Deevska, Gergana; Sunkara, Manjula; Karakashian, Claudia et al. (2014) Effect of procysteine on aging-associated changes in hepatic GSH and SMase: evidence for transcriptional regulation of smpd3. J Lipid Res 55:2041-52
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Panchatcharam, Manikandan; Miriyala, Sumitra; Salous, Abdelghaffar et al. (2013) Lipid phosphate phosphatase 3 negatively regulates smooth muscle cell phenotypic modulation to limit intimal hyperplasia. Arterioscler Thromb Vasc Biol 33:52-9
Subramanian, Thangaiah; Subramanian, Karunai Leela; Sunkara, Manjula et al. (2013) Syntheses of deuterium labeled prenyldiphosphate and prenylcysteine analogues for in vivo mass spectrometric quantification. J Labelled Comp Radiopharm 56:370-5
Karapetyan, Anush V; Klyachkin, Yuri M; Selim, Samy et al. (2013) Bioactive lipids and cationic antimicrobial peptides as new potential regulators for trafficking of bone marrow-derived stem cells in patients with acute myocardial infarction. Stem Cells Dev 22:1645-56

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