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CCR3 Signaling in Eosinophils

The chemotactic response of eosinophils is mostly mediated by CC Chemokine Receptor-3 (CCR3), linked to G-Proteins. Chemokines such as: Eotaxin, Eotaxin2, and Eotaxin3 signal exclusively via CCR3 that recruit eosinophils to the site of inflammation and activate them. Eosinophils express at least three chemokine receptors including CCR3, CCR1, and CXCR2. Of these,CCR3 achieves by far the highest expression levels and is the major eosinophil chemokine receptor. CCR3 is sensitive to pertussis toxin, indicating its linkage to G-αI...

CCR3 Signaling in Eosinophils

Pathway Summary

The chemotactic response of eosinophils is mostly mediated by CC Chemokine Receptor-3 (CCR3), linked to G-Proteins. Chemokines such as: Eotaxin, Eotaxin2, and Eotaxin3 signal exclusively via CCR3 that recruit eosinophils to the site of inflammation and activate them. Eosinophils express at least three chemokine receptors including CCR3, CCR1, and CXCR2. Of these,CCR3 achieves by far the highest expression levels and is the major eosinophil chemokine receptor. CCR3 is sensitive to pertussis toxin, indicating its linkage to G-αI.At sites of inflammation, eosinophils are responsible for tissue damage by the release of ROS (Reactive Oxygen Species) and toxic granule proteins. Moreover, CCR3 recruitment by eotaxins stimulates a set of downstream signaling pathways, which are responsible for eosinophil chemotaxis, degranulation, and propagation of the inflammatory response through the secretion of cytokines and chemokines.CCR3 recruitment by eotaxin activates MAPKs ERK1/2 and p38 in eosinophils, which are indispensable for eosinophil chemotaxis and degranulation. ERKs are regulated through the PI3K-γ-Ras-Raf1-MEK-ERK pathway. Although the upstream signal of p38 in the CCR3 pathway is unclear, Rac and PAKs have an active participation. On the signaling level, activation of MAPK pathway (ERK2 and p38) mediates arachidonic acid release catalyzed by cytosolic PLA2,leading to inflammatory responses, prolonged bronchoconstriction and increased bronchial mucus production. CCR3 is also transduce signals eliciting Ca2+ influx. This is accomplished by the activation of PLC-β (Phospholipase-C-β) that is responsible for the production of the second messengers Diacylglycerol (DAG) and Inositol Triphosphate (IP3) by cleaving Phosphatidylinositol-4,5-Bisphosphate (PIP2). IP3 binds to IP3 receptor (IP3R) on the surface of the ER and releases Ca2+. DAG activates PKC, which in turn is involved in the production of ROS, that causes tissue damage. The ERKs are also responsible for ROS production and the subsequent tissue damage.Rho is an important target of CCR3 stimulation in eosinophils, having a dichotomy of downstream signaling pathways, namely, Rho-ROCK and Rho-ERK pathways. The p21 G-protein RhoA and its substrates: ROCKs regulate the formation of stress fibers and focal adhesions. The ROCKs (ROCK1 and ROCK2) play a crucial role in actin cytoskeleton reorganization. ROCK1 activates MLCK, whereas ROCK2 is responsible for the latter through the inhibition of myosin phosphatase or the direct activation of MLCP.The actin cytoskeleton reorganization is regulated by the cytosolic Ca2+ concentration and by the Ca2+ sensitivity of myosin/actin filament. Classical calcium signaling pathway involves MLCK activation by calcium-Calmodulin complex leading to rearrangement of actin cytoskeleton.CCR3 provides a mechanism for the selective recruitment of eosinophils into tissue and is an attractive biological target for therapeutic intervention in the spectrum of diseases involving eosinophil-mediated tissue damage. More recently,involvement CCR3 as a co-receptor for HIV1 infection of microglia cells in the central nervous system has been traced out. Its preferential expression by Th2 T-cells has possible roles for CCR3 in the genesis and maintenance of allergic inflammation and the pathogenesis of atopic dermatitis. Moreover, eosinophils are major importance in other inflammatory diseases such as connective tissue diseases of unknown origin. Looking into its multiple actions, studies on CCR3 need to be stressed upon for drug development against various diseases.

CCR3 Signaling in Eosinophils Genes list

Explore Genes related to CCR3 Signaling in Eosinophils
CALML5
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Human
calmodulin like 5
CCL11
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Human
C-C motif chemokine ligand 11
CCL24
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Human
C-C motif chemokine ligand 24
CCL26
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Human
C-C motif chemokine ligand 26
CCR3
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Human
C-C motif chemokine receptor 3
CFL1
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Human
cofilin 1
CFL2
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Human
cofilin 2
ERAS
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Human
ES cell expressed Ras
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
JMJD7-PLA2G4B
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Human
JMJD7-PLA2G4B readthrough
KRAS
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Human
KRAS proto-oncogene, GTPase
LIMK1
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Human
LIM domain kinase 1
LIMK2
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Human
LIM domain kinase 2
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
MAPK11
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Human
mitogen-activated protein kinase 11
MAPK12
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Human
mitogen-activated protein kinase 12
MAPK13
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Human
mitogen-activated protein kinase 13
MAPK14
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Human
mitogen-activated protein kinase 14
MAPK3
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Human
mitogen-activated protein kinase 3
MPRIP
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Human
myosin phosphatase Rho interacting protein
MRAS
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Human
muscle RAS oncogene homolog
MYLK
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Human
myosin light chain kinase
NRAS
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Human
NRAS proto-oncogene, GTPase
OPN1SW
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Human
opsin 1, short wave sensitive
PAK1
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Human
p21 (RAC1) activated kinase 1
PAK2
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Human
p21 (RAC1) activated kinase 2
PAK3
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Human
p21 (RAC1) activated kinase 3
PAK4
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Human
p21 (RAC1) activated kinase 4
PAK5
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Human
p21 (RAC1) activated kinase 5
PAK6
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Human
p21 (RAC1) activated kinase 6
PIK3C2A
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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
PLA2G10
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Human
phospholipase A2 group X
PLA2G12A
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Human
phospholipase A2 group XIIA
PLA2G12B
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Human
phospholipase A2 group XIIB
PLA2G1B
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Human
phospholipase A2 group IB
PLA2G2A
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Human
phospholipase A2 group IIA
PLA2G2D
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Human
phospholipase A2 group IID
PLA2G2E
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Human
phospholipase A2 group IIE
PLA2G2F
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Human
phospholipase A2 group IIF
PLA2G3
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Human
phospholipase A2 group III
PLA2G4A
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Human
phospholipase A2 group IVA
PLA2G4B
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Human
phospholipase A2 group IVB
PLA2G4C
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Human
phospholipase A2 group IVC
PLA2G4D
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Human
phospholipase A2 group IVD
PLA2G4E
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Human
phospholipase A2 group IVE
PLA2G4F
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Human
phospholipase A2 group IVF
PLA2G5
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Human
phospholipase A2 group V
PLA2G6
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Human
phospholipase A2 group VI
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
PPP1CB
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Human
protein phosphatase 1 catalytic subunit beta
PPP1R12A
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Human
protein phosphatase 1 regulatory subunit 12A
PPP1R12B
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Human
protein phosphatase 1 regulatory subunit 12B
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
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
RHOA
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Human
ras homolog family member A
ROCK1
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Human
Rho associated coiled-coil containing protein kinase 1
ROCK2
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Human
Rho associated coiled-coil containing protein kinase 2
RRAS
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Human
RAS related
RRAS2
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Human
RAS related 2

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