These studies are designed to study the activation of human neutrophils by phagocytic and non-phagocytic stimuli, with particular reference to the role of membrane lipids as transducers or modulators of stimulus-response coupling. Calcium acts as a """"""""second messenger"""""""" in the activation of the neutrophil. A rise in cytosolic Ca is the first measurable event following activation by a variety of stimuli. Ca is mobilized principally from intracellular stores. A role for the breakdown of phosphatidyl inositols, in particular phosphatidyl inositol 4,5 bisphosphate with the generation of diacyl glycerol and inositol 1,4,5 trisphosphate has been implicated in the Ca movements accompanying neutrophil activation. The role of these lipids and their derivatives during neutrophil activation will be critically evaluated. The tumor promoter PMA can bypass this Ca requirement, possibly by activating a protein kinase C; this protein kinase C is activated by diacyl glycerol and serves to modify the Ca requirements as a variety of Ca requiring enzyme reactions. The role of protein kinases in mediating and modulating the neutrophil responses will be investigated. Further investigation into the inter-relation of Ca movements, phospholipid remodeling and protein kinase activity should yield crucial information on the activation and modulation of neutrophil responses. Since the appropriate functioning of the neutrophil is important in host defenses, as well as in inflammatory disorders, a more fundamental understanding of the activation sequence of the neutrophil is of obvious clinical importance.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
5R01AI024840-02
Application #
3138075
Study Section
Hematology Subcommittee 2 (HEM)
Project Start
1986-09-01
Project End
1989-08-31
Budget Start
1987-09-01
Budget End
1988-08-31
Support Year
2
Fiscal Year
1987
Total Cost
Indirect Cost
Name
Children's Hospital of Philadelphia
Department
Type
DUNS #
073757627
City
Philadelphia
State
PA
Country
United States
Zip Code
19104
Korchak, Helen M; Dorsey, Lindsay B; Li, Haiying et al. (2007) Selective roles for alpha-PKC in positive signaling for O-(2) generation and calcium mobilization but not elastase release in differentiated HL60 cells. Biochim Biophys Acta 1773:440-9
Lai, J-P; Ho, W Z; Kilpatrick, L E et al. (2006) Full-length and truncated neurokinin-1 receptor expression and function during monocyte/macrophage differentiation. Proc Natl Acad Sci U S A 103:7771-6
Kilpatrick, Laurie E; Sun, Shuang; Mackie, Demauri et al. (2006) Regulation of TNF mediated antiapoptotic signaling in human neutrophils: role of delta-PKC and ERK1/2. J Leukoc Biol 80:1512-21
Kilpatrick, Laurie E; Sun, Shuang; Korchak, Helen M (2004) Selective regulation by delta-PKC and PI 3-kinase in the assembly of the antiapoptotic TNFR-1 signaling complex in neutrophils. Am J Physiol Cell Physiol 287:C633-42
Kilpatrick, Laurie E; Lee, Julia Y; Haines, Kathleen M et al. (2002) A role for PKC-delta and PI 3-kinase in TNF-alpha-mediated antiapoptotic signaling in the human neutrophil. Am J Physiol Cell Physiol 283:C48-57
Korchak, H M; Corkey, B E; Yaney, G C et al. (2001) Negative regulation of ligand-initiated Ca(2+) uptake by PKC-beta II in differentiated HL60 cells. Am J Physiol Cell Physiol 281:C514-23
Korchak, H M; Kilpatrick, L E (2001) Roles for beta II-protein kinase C and RACK1 in positive and negative signaling for superoxide anion generation in differentiated HL60 cells. J Biol Chem 276:8910-7
Korchak, H M; Kilpatrick, L E (2001) TNFalpha elicits association of PI 3-kinase with the p60TNFR and activation of PI 3-kinase in adherent neutrophils. Biochem Biophys Res Commun 281:651-6
Kilpatrick, L E; Song, Y H; Rossi, M W et al. (2000) Serine phosphorylation of p60 tumor necrosis factor receptor by PKC-delta in TNF-alpha-activated neutrophils. Am J Physiol Cell Physiol 279:C2011-8
Yaney, G C; Korchak, H M; Corkey, B E (2000) Long-chain acyl CoA regulation of protein kinase C and fatty acid potentiation of glucose-stimulated insulin secretion in clonal beta-cells. Endocrinology 141:1989-98

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