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fMLP Signaling in Neutrophils

Neutrophils play an important role in the host defense by invading microbial pathogens. Upon infection neutrophils become activated through interaction with chemo attractants and cytokines. These ligands bind to a variety of cell surface receptors, including heterotrimeric GPCR for N-formyl-Met-Leu-Phe (fMLP) and Platelet Activating Factor (PAF), and tyrosine kinase-associated receptors for GMCSF. Receptor activation triggers intracellular signal transduction pathways, resulting in the correct biological response, for instance, migration, phagocytosis, antibody-dependent cell mediated cytotoxicity, degranulation, superoxide production, transcriptional activation, and actin reorganization. When G-protein is blocked by pertussis toxin, cells do not respond to fMLP...

fMLP Signaling in Neutrophils

Pathway Summary

Neutrophils play an important role in the host defense by invading microbial pathogens. Upon infection neutrophils become activated through interaction with chemo attractants and cytokines. These ligands bind to a variety of cell surface receptors, including heterotrimeric GPCR for N-formyl-Met-Leu-Phe (fMLP) and Platelet Activating Factor (PAF), and tyrosine kinase-associated receptors for GMCSF. Receptor activation triggers intracellular signal transduction pathways, resulting in the correct biological response, for instance, migration, phagocytosis, antibody-dependent cell mediated cytotoxicity, degranulation, superoxide production, transcriptional activation, and actin reorganization. When G-protein is blocked by pertussis toxin, cells do not respond to fMLP. Improper functioning of neutrophils is implicated in the pathogenesis of a variety of inflammatory diseases resulting in tissue damage.fMLP receptor expression is upregulated by various cytokines. The human fMLP receptor shows sequence homology to the receptor of IL-8 (Interleukin-8). Granulocytes and mononuclear cells are the conventional target for fMLP actions. fMLP signal transduction pathways lead to biosynthesis of the prostanoid. Activation of PLC-β results in production of the intracellular second messengers DAG and IP3. These second messengers activate PKC ; mobilize Ca2+ from intracellular stores, which regulate Calm (Calmodulin) and calcineurin. Calcineurin activates the transcription factor NFAT (Nuclear Factor of Activated T-Cells), which contributes to activation of chemokine genes. PKC leads to NF-κB activation and I-κB (Inhibitor of κ Light Chain Gene Enhancer in B-Cells) degradation. Activation of MAPK (Mitogen Activated Protein Kinase) cascades leads to ERK1/2 (Extracellular Signal-Regulated Kinase) dependent p47Phox phosphorylation as well as activation of the Elk1 transcription factor and chemokine gene expression. fMLP receptor ligands also activate the multisubunit enzyme NADPH oxidase, which produces ROS (Reactive Oxygen Species) rapidly released in the respiratory burst. One of the components of the NADPH (Nicotinamide Adenine Dinucleotide Phosphate) oxidase is p47Phox.In granulocytes a short exposure to fMLP induces actin polymerization, membrane ruffling, and cell polarization leading to cell migration toward a concentration gradient. The FPR (Formyl Peptide Receptor) activates proteins that are implicated in actin reorganization such as Rho family GTPases. PI3K (Phosphatidylinositiol-3 Kinase) activity is induced during leukocyte motility by GPCR and tyrosine kinase receptors. Activated CDC42 sets in motion signaling pathways leading through Rac, and presumably phosphoinositide synthesis to actin filament barbed-end uncapping and maximal catalytic activity of WASP (Wiskott-Aldrich Syndrome Protein) family proteins activated by GTP-CDC42. Active WASP proteins in turn cause the ARP2/3 (Actin-Related Proteins) complex to promote actin nucleation.The receptor agonist fMLP is used as a general-purpose agent to induce cell activation of granulocytes. The stimulatory activity of fMLP is influenced negatively by IL-1 and positively by TNF-α. fMLP is a strong chemoattractant and, among other things, induces adherence, degranulation and production of tissue-destructive oxygen-derived free radicals in phagocytic cells. Endogenous fMLP is produced in both physiological and pathological conditions. As regards human pregnancy, fMLP causes an enhancement of amniotic Ptg (Prostaglandin) release. fMLP-activated granulocytes and mononuclear cells release cytokines that, in turn, stimulate PGE2 production from amnion cells. fMLP and fMLP antagonists represent new tools in the future management of premature labor, a major cause of maternal and fetal morbidity and mortality.

fMLP Signaling in Neutrophils Genes list

Explore Genes related to fMLP Signaling in Neutrophils
ACTR2
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Human
actin related protein 2
ACTR3
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Human
actin related protein 3
ARPC1A
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Human
actin related protein 2/3 complex subunit 1A
ARPC1B
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Human
actin related protein 2/3 complex subunit 1B
ARPC2
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Human
actin related protein 2/3 complex subunit 2
ARPC3
icon_0140_ls_gen_dna_rna-s
Human
actin related protein 2/3 complex subunit 3
ARPC4
icon_0140_ls_gen_dna_rna-s
Human
actin related protein 2/3 complex subunit 4
ARPC5
icon_0140_ls_gen_dna_rna-s
Human
actin related protein 2/3 complex subunit 5
ARPC5L
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Human
actin related protein 2/3 complex subunit 5 like
CALML5
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Human
calmodulin like 5
CDC42
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Human
cell division cycle 42
CHP1
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Human
calcineurin like EF-hand protein 1
CYBB
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Human
cytochrome b-245 beta chain
ELK1
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Human
ETS transcription factor ELK1
ERAS
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Human
ES cell expressed Ras
FPR1
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Human
formyl peptide receptor 1
FPR2
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Human
formyl peptide receptor 2
FPR3
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Human
formyl peptide receptor 3
GNA11
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Human
G protein subunit alpha 11
GNA12
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Human
G protein subunit alpha 12
GNA13
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Human
G protein subunit alpha 13
GNA14
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Human
G protein subunit alpha 14
GNA15
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Human
G protein subunit alpha 15
GNAI1
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Human
G protein subunit alpha i1
GNAI2
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Human
G protein subunit alpha i2
GNAI3
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Human
G protein subunit alpha i3
GNAL
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Human
G protein subunit alpha L
GNAO1
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Human
G protein subunit alpha o1
GNAQ
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Human
G protein subunit alpha q
GNAS
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Human
GNAS complex locus
GNAT1
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Human
G protein subunit alpha transducin 1
GNAT2
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Human
G protein subunit alpha transducin 2
GNAZ
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Human
G protein subunit alpha z
GNB1
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Human
G protein subunit beta 1
GNB1L
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Human
G protein subunit beta 1 like
GNB2
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Human
G protein subunit beta 2
GNB3
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Human
G protein subunit beta 3
GNB4
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Human
G protein subunit beta 4
GNB5
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Human
G protein subunit beta 5
GNG10
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Human
G protein subunit gamma 10
GNG11
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Human
G protein subunit gamma 11
GNG12
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Human
G protein subunit gamma 12
GNG13
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Human
G protein subunit gamma 13
GNG2
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Human
G protein subunit gamma 2
GNG3
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Human
G protein subunit gamma 3
GNG4
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Human
G protein subunit gamma 4
GNG5
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Human
G protein subunit gamma 5
GNG7
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Human
G protein subunit gamma 7
HRAS
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Human
HRas proto-oncogene, GTPase
ITPR1
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Human
inositol 1,4,5-trisphosphate receptor type 1
ITPR2
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Human
inositol 1,4,5-trisphosphate receptor type 2
ITPR3
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Human
inositol 1,4,5-trisphosphate receptor type 3
KRAS
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Human
KRAS proto-oncogene, GTPase
MAP2K1
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Human
mitogen-activated protein kinase kinase 1
MAP2K2
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Human
mitogen-activated protein kinase kinase 2
MAPK1
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Human
mitogen-activated protein kinase 1
MAPK14
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Human
mitogen-activated protein kinase 14
MAPK3
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Human
mitogen-activated protein kinase 3
MRAS
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Human
muscle RAS oncogene homolog
NCF1
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Human
neutrophil cytosolic factor 1
NCF2
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Human
neutrophil cytosolic factor 2
NFAT5
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Human
nuclear factor of activated T cells 5
NFATC1
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Human
nuclear factor of activated T cells 1
NFATC2
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Human
nuclear factor of activated T cells 2
NFATC3
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Human
nuclear factor of activated T cells 3
NFATC4
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Human
nuclear factor of activated T cells 4
NFKB1
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Human
nuclear factor kappa B subunit 1
NFKB2
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Human
nuclear factor kappa B subunit 2
NFKBIA
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Human
NFKB inhibitor alpha
NFKBIB
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Human
NFKB inhibitor beta
NFKBID
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Human
NFKB inhibitor delta
NFKBIE
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Human
NFKB inhibitor epsilon
NOX1
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Human
NADPH oxidase 1
NOX3
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Human
NADPH oxidase 3
NOX4
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Human
NADPH oxidase 4
NRAS
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Human
NRAS proto-oncogene, GTPase
OPN1SW
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Human
opsin 1, short wave sensitive
PIK3C2A
icon_0140_ls_gen_dna_rna-s
Human
phosphatidylinositol-4-phosphate 3-kinase catalytic subunit type 2 alpha
PIK3C2B
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Human
phosphatidylinositol-4-phosphate 3-kinase catalytic subunit type 2 beta
PIK3C2G
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Human
phosphatidylinositol-4-phosphate 3-kinase catalytic subunit type 2 gamma
PIK3C3
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Human
phosphatidylinositol 3-kinase catalytic subunit type 3
PIK3CA
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Human
phosphatidylinositol-4,5-bisphosphate 3-kinase catalytic subunit alpha
PIK3CB
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Human
phosphatidylinositol-4,5-bisphosphate 3-kinase catalytic subunit beta
PIK3CD
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Human
phosphatidylinositol-4,5-bisphosphate 3-kinase catalytic subunit delta
PIK3CG
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Human
phosphatidylinositol-4,5-bisphosphate 3-kinase catalytic subunit gamma
PIK3R1
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Human
phosphoinositide-3-kinase regulatory subunit 1
PIK3R2
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Human
phosphoinositide-3-kinase regulatory subunit 2
PIK3R3
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Human
phosphoinositide-3-kinase regulatory subunit 3
PIK3R4
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Human
phosphoinositide-3-kinase regulatory subunit 4
PIK3R5
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Human
phosphoinositide-3-kinase regulatory subunit 5
PIK3R6
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Human
phosphoinositide-3-kinase regulatory subunit 6
PLCB1
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Human
phospholipase C beta 1
PLCB2
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Human
phospholipase C beta 2
PLCB3
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Human
phospholipase C beta 3
PLCB4
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Human
phospholipase C beta 4
PPP3CA
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Human
protein phosphatase 3 catalytic subunit alpha
PPP3CB
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Human
protein phosphatase 3 catalytic subunit beta
PPP3CC
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Human
protein phosphatase 3 catalytic subunit gamma
PPP3R1
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Human
protein phosphatase 3 regulatory subunit B, alpha
PPP3R2
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Human
protein phosphatase 3 regulatory subunit B, beta
PRKCA
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Human
protein kinase C alpha
PRKCB
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Human
protein kinase C beta
PRKCD
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Human
protein kinase C delta
PRKCE
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Human
protein kinase C epsilon
PRKCG
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Human
protein kinase C gamma
PRKCH
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Human
protein kinase C eta
PRKCI
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Human
protein kinase C iota
PRKCQ
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Human
protein kinase C theta
PRKCZ
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Human
protein kinase C zeta
PRKD1
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Human
protein kinase D1
PRKD3
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Human
protein kinase D3
RAC1
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Human
Rac family small GTPase 1
RAC2
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Human
Rac family small GTPase 2
RAC3
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Human
Rac family small GTPase 3
RAF1
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Human
Raf-1 proto-oncogene, serine/threonine kinase
RALA
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Human
RAS like proto-oncogene A
RALB
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Human
RAS like proto-oncogene B
RAP1A
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Human
RAP1A, member of RAS oncogene family
RAP1B
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Human
RAP1B, member of RAS oncogene family
RAP2A
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Human
RAP2A, member of RAS oncogene family
RAP2B
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Human
RAP2B, member of RAS oncogene family
RASD1
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Human
ras related dexamethasone induced 1
RASD2
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Human
RASD family member 2
REL
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Human
REL proto-oncogene, NF-kB subunit
RELA
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Human
RELA proto-oncogene, NF-kB subunit
RELB
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Human
RELB proto-oncogene, NF-kB subunit
RRAS
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Human
RAS related
RRAS2
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Human
RAS related 2
WAS
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Human
WASP actin nucleation promoting factor

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