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Apelin Adipocyte Signaling Pathway

The apelin gene is X-linked and is synthesized as a 77 amino acid pre-pro-peptide that is cleaved post-translationally to generate several active forms whose lengths range from 36 to 12 amino acids. These isoforms possess similar functions but display different tissue distribution, potency and receptor binding affinity. Apelin acts as a ligand for the APJ receptor (angiotensin II receptor like-1, AT-1), which is coupled to pertussis toxin (PTX)-sensitive G proteins. The apelin/APJ system plays important and various roles in the physiology and pathophysiology of many organs, including regulation of blood pressure, angiogenesis, cardiac contractility, metabolic balance, cell proliferation and apoptosis. It is noteworthy that the APJ receptor is also activated by APELA, a distinct peptide hormone with significant effects on cardiac development...

Apelin Adipocyte Signaling Pathway

Pathway Summary

The apelin gene is X-linked and is synthesized as a 77 amino acid pre-pro-peptide that is cleaved post-translationally to generate several active forms whose lengths range from 36 to 12 amino acids. These isoforms possess similar functions but display different tissue distribution, potency and receptor binding affinity. Apelin acts as a ligand for the APJ receptor (angiotensin II receptor like-1, AT-1), which is coupled to pertussis toxin (PTX)-sensitive G proteins. The apelin/APJ system plays important and various roles in the physiology and pathophysiology of many organs, including regulation of blood pressure, angiogenesis, cardiac contractility, metabolic balance, cell proliferation and apoptosis. It is noteworthy that the APJ receptor is also activated by APELA, a distinct peptide hormone with significant effects on cardiac development.Apelin is an adipocytokine secreted by, and sensed by, adipocytes, that tends to counteract diabetes mellitus and diabetic complications. It is induced in part by insulin, and, like insulin, by glucose and repletion. Via several pathways such as AMPK, PKA, and ERK1/2, it dampens ROS generation, increases mitochondrial biogenesis, reduces fatty acid generation and release, and promotes brown fat over white.

Apelin Adipocyte Signaling Pathway Genes list

Explore Genes related to Apelin Adipocyte Signaling Pathway
ADCY1
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Human
adenylate cyclase 1
ADCY10
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Human
adenylate cyclase 10
ADCY2
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Human
adenylate cyclase 2
ADCY3
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Human
adenylate cyclase 3
ADCY4
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Human
adenylate cyclase 4
ADCY5
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Human
adenylate cyclase 5
ADCY6
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Human
adenylate cyclase 6
ADCY7
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Human
adenylate cyclase 7
ADCY8
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Human
adenylate cyclase 8
ADCY9
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Human
adenylate cyclase 9
APLN
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Human
apelin
APLNR
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Human
apelin receptor
CAT
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Human
catalase
CLIC2
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Human
chloride intracellular channel 2
CYBB
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Human
cytochrome b-245 beta chain
GNA11
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Human
G protein subunit alpha 11
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
GPX1
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Human
glutathione peroxidase 1
GPX2
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Human
glutathione peroxidase 2
GPX3
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Human
glutathione peroxidase 3
GPX4
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Human
glutathione peroxidase 4
GPX5
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Human
glutathione peroxidase 5
GPX6
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Human
glutathione peroxidase 6
GPX7
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Human
glutathione peroxidase 7
GPX8
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Human
glutathione peroxidase 8 (putative)
GSTA1
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Human
glutathione S-transferase alpha 1
GSTA5
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Human
glutathione S-transferase alpha 5
GSTK1
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Human
glutathione S-transferase kappa 1
GSTM1
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Human
glutathione S-transferase mu 1
GSTM2
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Human
glutathione S-transferase mu 2
GSTP1
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Human
glutathione S-transferase pi 1
GSTT1
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Human
glutathione S-transferase theta 1
GSTZ1
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Human
glutathione S-transferase zeta 1
GUCY1A1
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Human
guanylate cyclase 1 soluble subunit alpha 1
GUCY1B1
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Human
guanylate cyclase 1 soluble subunit beta 1
HIF1A
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Human
hypoxia inducible factor 1 subunit alpha
INS
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Human
insulin
LIPE
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Human
lipase E, hormone sensitive type
MAPK1
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Human
mitogen-activated protein kinase 1
MAPK10
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Human
mitogen-activated protein kinase 10
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
MAPK15
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Human
mitogen-activated protein kinase 15
MAPK3
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Human
mitogen-activated protein kinase 3
MAPK4
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Human
mitogen-activated protein kinase 4
MAPK6
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Human
mitogen-activated protein kinase 6
MAPK7
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Human
mitogen-activated protein kinase 7
MAPK8
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Human
mitogen-activated protein kinase 8
MAPK9
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Human
mitogen-activated protein kinase 9
MGST1
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Human
microsomal glutathione S-transferase 1
MGST2
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Human
microsomal glutathione S-transferase 2
MGST3
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Human
microsomal glutathione S-transferase 3
NCF1
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Human
neutrophil cytosolic factor 1
NCF2
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Human
neutrophil cytosolic factor 2
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
OPN1SW
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Human
opsin 1, short wave sensitive
PLIN1
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Human
perilipin 1
PPARGC1A
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Human
PPARG coactivator 1 alpha
PRDX6
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Human
peroxiredoxin 6
PRKAA1
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Human
protein kinase AMP-activated catalytic subunit alpha 1
PRKAA2
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Human
protein kinase AMP-activated catalytic subunit alpha 2
PRKAB1
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Human
protein kinase AMP-activated non-catalytic subunit beta 1
PRKAB2
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Human
protein kinase AMP-activated non-catalytic subunit beta 2
PRKACA
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Human
protein kinase cAMP-activated catalytic subunit alpha
PRKACB
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Human
protein kinase cAMP-activated catalytic subunit beta
PRKACG
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Human
protein kinase cAMP-activated catalytic subunit gamma
PRKAG1
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Human
protein kinase AMP-activated non-catalytic subunit gamma 1
PRKAG2
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Human
protein kinase AMP-activated non-catalytic subunit gamma 2
PRKAG3
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Human
protein kinase AMP-activated non-catalytic subunit gamma 3
PRKAR1A
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Human
protein kinase cAMP-dependent type I regulatory subunit alpha
PRKAR1B
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Human
protein kinase cAMP-dependent type I regulatory subunit beta
PRKAR2A
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Human
protein kinase cAMP-dependent type II regulatory subunit alpha
PRKAR2B
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Human
protein kinase cAMP-dependent type II regulatory subunit beta
PTGES
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Human
prostaglandin E synthase
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
SOD1
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Human
superoxide dismutase 1
UCP1
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Human
uncoupling protein 1

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