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MSP-RON Signaling Pathway

A basic requirement of the immune response is that the host must be able to clear infections efficiently while minimizing damage caused to host tissues. Regulation of macrophage activity in response to inflammatory stimuli must be finely tuned to promote an effective immune response. Macrophage Stimulating Protein (MSP) acts through the transmembrane receptor kinase RON Protein Tyrosine Kinase/Receptor d'origine nantais to play a role in inflammation in response to tissue injury. The MSP protein has two receptor binding sites of different affinities: one on the α-chain and one on the β-chain. The receptor binding site on the α-chain of MSP interacts with the β-chain of RON receptor and stimulates ciliary motility in these cells...

MSP-RON Signaling Pathway

Pathway Summary

A basic requirement of the immune response is that the host must be able to clear infections efficiently while minimizing damage caused to host tissues. Regulation of macrophage activity in response to inflammatory stimuli must be finely tuned to promote an effective immune response. Macrophage Stimulating Protein (MSP) acts through the transmembrane receptor kinase RON Protein Tyrosine Kinase/Receptor d'origine nantais to play a role in inflammation in response to tissue injury. The MSP protein has two receptor binding sites of different affinities: one on the α-chain and one on the β-chain. The receptor binding site on the α-chain of MSP interacts with the β-chain of RON receptor and stimulates ciliary motility in these cells.MSP is secreted by the liver into the blood as proMSP, an inactive precursor form which is then activated by tissue clotting factors such as FXIA, FXIIA and Klk. Binding of activated MSP to RON expressed on macrophages, monocytes and keratinocytes stimulates various second messenger pathways. Macrophages respond to MSP with changes in cell shape and motility, whereas keratinocytes respond by proliferating. LPS from gram negative bacteria and lipoteichoic acid from gram positive bacteria are recognized by the TLR4 and TLR2 receptors, respectively. Once activated, these receptors located on macrophages and neutrophils lead to the release of NO. Peritoneal neutrophils also produce superoxide which leads to liver cell injury. This phenomenon of Kupffer cell damage by NO or superoxide is known as 'peroxynitrite-induced liver damage'. MSP inhibits the expression of iNOS leading to the inhibition of NO and superoxide production. Thus liver damage is prevented.MSP-induced complement mediated phagocytosis requires RON and the CR3 receptor(Integrin αM and Integrin β2). MSP stimulation of macrophages results in PI3K activity leading to activation of the atypical PKC-ζ. PKC-ζ is also activated by the CR3 receptor leading to MSP-induced CR3 mediated phagocytosis which is dependent on F-actin re-organization and phagocytic activity. MSP binding to RON also activates the RON Kinase function through auto-phosphorylation. Subsequently, pp90 is activated, bypassing JAK2 leading to morphological changes. MSP and RON receptor interaction also leads to the production of cytokines such as IL-12 and IFN-γ. These cytokines in turn activate NK cells and T cells resulting in phagocytic activity.

MSP-RON Signaling Pathway Genes list

Explore Genes related to MSP-RON Signaling Pathway
ACTA1
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Human
actin alpha 1, skeletal muscle
ACTA2
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Human
actin alpha 2, smooth muscle
ACTB
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Human
actin beta
ACTC1
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Human
actin alpha cardiac muscle 1
ACTG1
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Human
actin gamma 1
ACTG2
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Human
actin gamma 2, smooth muscle
CCL2
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Human
C-C motif chemokine ligand 2
CCR2
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Human
C-C motif chemokine receptor 2
CSF1
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Human
colony stimulating factor 1
CSF2RB
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Human
colony stimulating factor 2 receptor subunit beta
IFNG
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Human
interferon gamma
IL3
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Human
interleukin 3
IL3RA
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Human
interleukin 3 receptor subunit alpha
ITGAM
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Human
integrin subunit alpha M
ITGB2
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Human
integrin subunit beta 2
JAK2
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Human
Janus kinase 2
KLK1
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Human
kallikrein 1
KLK10
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Human
kallikrein related peptidase 10
KLK11
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Human
kallikrein related peptidase 11
KLK12
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Human
kallikrein related peptidase 12
KLK13
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Human
kallikrein related peptidase 13
KLK14
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Human
kallikrein related peptidase 14
KLK15
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Human
kallikrein related peptidase 15
KLK2
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Human
kallikrein related peptidase 2
KLK3
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Human
kallikrein related peptidase 3
KLK4
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Human
kallikrein related peptidase 4
KLK5
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Human
kallikrein related peptidase 5
KLK6
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Human
kallikrein related peptidase 6
KLK7
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Human
kallikrein related peptidase 7
KLK8
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Human
kallikrein related peptidase 8
KLK9
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Human
kallikrein related peptidase 9
KLKB1
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Human
kallikrein B1
MST1
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Human
macrophage stimulating 1
MST1R
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Human
macrophage stimulating 1 receptor
NOS2
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Human
nitric oxide synthase 2
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
PRKCZ
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Human
protein kinase C zeta
RPS6KA2
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Human
ribosomal protein S6 kinase A2
TLR2
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Human
toll like receptor 2
TLR4
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Human
toll like receptor 4
TNF
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Human
tumor necrosis factor

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