GenAge entry for JAK2 (Homo sapiens)

Gene name (HAGRID: 215)

HGNC symbol
JAK2 
Aliases
JTK10 
Common name
Janus kinase 2 

Potential relevance to the human ageing process

Main reason for selection
Entry selected based on evidence showing that the gene product to be a target of genes previously linked to ageing
Description

JAK2 is a tyrosine kinase involved in cytokine receptor signalling. Disruption of JAK2 causes embryonic lethality due to the absence of definitive erythropoiesis [1175], however, knockdown or pharmacological inhibition of the JAK-STAT enhances satellite stem cell division potential, resulting in better muscle regeneration [3635].

Administrating JAK1/2 inhibitors to aged mice alleviates adipose and systemic inflammation, reduced frailty, and enhanced physical function. Upon JAK inhibition there was a reduction in inflammatory cytokines and chemokines. In addition, inhibition of the JAK pathway partially restored age-related decline in coordination [4344]. Inhibition of the JAK pathway using RNAi or JAK inhibitors in human cells suppresses the senescence associated secretory phenotype (SASP) [4344]. Its signalling functions and its association with a number of genes previously linked to ageing suggest JAK2 may play some role in ageing, even though a direct association of JAK2 with human ageing has not been established.

Cytogenetic information

Cytogenetic band
9p24
Location
4,985,245 bp to 5,128,183 bp
Orientation
Plus strand
Display region using the UCSC Genome Browser (GRCh38/hg38)

Protein information

Gene Ontology
Process: GO:0000165; MAPK cascade
GO:0000186; activation of MAPKK activity
GO:0002250; adaptive immune response
GO:0006468; protein phosphorylation
GO:0006915; apoptotic process
GO:0006919; activation of cysteine-type endopeptidase activity involved in apoptotic process
GO:0006928; movement of cell or subcellular component
GO:0007165; signal transduction
GO:0007167; enzyme linked receptor protein signaling pathway
GO:0007186; G-protein coupled receptor signaling pathway
GO:0007204; positive regulation of cytosolic calcium ion concentration
GO:0007259; JAK-STAT cascade
GO:0007260; tyrosine phosphorylation of STAT protein
GO:0007262; STAT protein import into nucleus
GO:0007498; mesoderm development
GO:0007596; blood coagulation
GO:0008285; negative regulation of cell proliferation
GO:0008631; intrinsic apoptotic signaling pathway in response to oxidative stress
GO:0010667; negative regulation of cardiac muscle cell apoptotic process
GO:0010811; positive regulation of cell-substrate adhesion
GO:0014068; positive regulation of phosphatidylinositol 3-kinase signaling
GO:0016477; cell migration
GO:0018108; peptidyl-tyrosine phosphorylation
GO:0019221; cytokine-mediated signaling pathway
GO:0022408; negative regulation of cell-cell adhesion
GO:0030041; actin filament polymerization
GO:0030154; cell differentiation
GO:0030218; erythrocyte differentiation
GO:0030335; positive regulation of cell migration
GO:0031103; axon regeneration
GO:0031959; mineralocorticoid receptor signaling pathway
GO:0032024; positive regulation of insulin secretion
GO:0032496; response to lipopolysaccharide
GO:0032516; positive regulation of phosphoprotein phosphatase activity
GO:0032731; positive regulation of interleukin-1 beta production
GO:0032760; positive regulation of tumor necrosis factor production
GO:0033160; positive regulation of protein import into nucleus, translocation
GO:0033194; response to hydroperoxide
GO:0033209; tumor necrosis factor-mediated signaling pathway
GO:0034612; response to tumor necrosis factor
GO:0035409; histone H3-Y41 phosphorylation
GO:0035556; intracellular signal transduction
GO:0035722; interleukin-12-mediated signaling pathway
GO:0038083; peptidyl-tyrosine autophosphorylation
GO:0042127; regulation of cell proliferation
GO:0042503; tyrosine phosphorylation of Stat3 protein
GO:0042506; tyrosine phosphorylation of Stat5 protein
GO:0042508; tyrosine phosphorylation of Stat1 protein
GO:0042517; positive regulation of tyrosine phosphorylation of Stat3 protein
GO:0042523; positive regulation of tyrosine phosphorylation of Stat5 protein
GO:0042977; activation of JAK2 kinase activity
GO:0042981; regulation of apoptotic process
GO:0043388; positive regulation of DNA binding
GO:0043392; negative regulation of DNA binding
GO:0043524; negative regulation of neuron apoptotic process
GO:0043547; positive regulation of GTPase activity
GO:0045087; innate immune response
GO:0045429; positive regulation of nitric oxide biosynthetic process
GO:0045597; positive regulation of cell differentiation
GO:0045822; negative regulation of heart contraction
GO:0046677; response to antibiotic
GO:0046777; protein autophosphorylation
GO:0048008; platelet-derived growth factor receptor signaling pathway
GO:0050727; regulation of inflammatory response
GO:0050729; positive regulation of inflammatory response
GO:0050731; positive regulation of peptidyl-tyrosine phosphorylation
GO:0050867; positive regulation of cell activation
GO:0051091; positive regulation of sequence-specific DNA binding transcription factor activity
GO:0051770; positive regulation of nitric-oxide synthase biosynthetic process
GO:0060333; interferon-gamma-mediated signaling pathway
GO:0060334; regulation of interferon-gamma-mediated signaling pathway
GO:0060396; growth hormone receptor signaling pathway
GO:0060397; JAK-STAT cascade involved in growth hormone signaling pathway
GO:0060399; positive regulation of growth hormone receptor signaling pathway
GO:0061180; mammary gland epithelium development
GO:0070671; response to interleukin-12
GO:0097191; extrinsic apoptotic signaling pathway
GO:0097296; activation of cysteine-type endopeptidase activity involved in apoptotic signaling pathway
GO:1902728; positive regulation of growth factor dependent skeletal muscle satellite cell proliferation
GO:1904037; positive regulation of epithelial cell apoptotic process
GO:1904707; positive regulation of vascular smooth muscle cell proliferation
Cellular component: GO:0005634; nucleus
GO:0005654; nucleoplasm
GO:0005737; cytoplasm
GO:0005829; cytosol
GO:0005856; cytoskeleton
GO:0005901; caveola
GO:0016363; nuclear matrix
GO:0031234; extrinsic component of cytoplasmic side of plasma membrane
GO:0031904; endosome lumen
GO:0045121; membrane raft
Function: GO:0004672; protein kinase activity
GO:0004713; protein tyrosine kinase activity
GO:0004715; non-membrane spanning protein tyrosine kinase activity
GO:0005088; Ras guanyl-nucleotide exchange factor activity
GO:0005102; receptor binding
GO:0005131; growth hormone receptor binding
GO:0005143; interleukin-12 receptor binding
GO:0005515; protein binding
GO:0005524; ATP binding
GO:0008022; protein C-terminus binding
GO:0019901; protein kinase binding
GO:0020037; heme binding
GO:0031702; type 1 angiotensin receptor binding
GO:0033130; acetylcholine receptor binding
GO:0035401; histone kinase activity (H3-Y41 specific)
GO:0042169; SH2 domain binding
GO:0042393; histone binding
GO:0043548; phosphatidylinositol 3-kinase binding
GO:0043560; insulin receptor substrate binding
GO:0046872; metal ion binding
GO:0051428; peptide hormone receptor binding
Hide GO terms

Protein interactions and network

Protein-protein interacting partners in GenAge
GHR, SHC1, PTPN11, STAT5B, STAT3, STAT5A, IRS1, PTPN1, EGFR, ERBB2, INSR, IL2RG, EPOR, BRCA1, HSP90AA1, EMD, GRB2, PTK2B, PTK2, FGFR1, MAP3K5, PIK3R1, HSPA8, JAK2, AGTR1
STRING interaction network
Protein-Protein network diagram for JAK2

Retrieve sequences for JAK2

ORF
ORF
CDS
CDS

Homologs in model organisms

Danio rerio
jak2b
Mus musculus
Jak2
Rattus norvegicus
Jak2

In other databases

LongevityMap
  • This gene is present as JAK2
CellAge
  • This gene is present as JAK2

Selected references

External links

EPD
ORF Accession
NM_004972
CDS Accession
NP_004963
OMIM
147796
HPRD
00993
Ensembl
JAK2
UniProt/Swiss-Prot
JAK2_HUMAN
GeneCards
JAK2
Entrez Gene
3717
UniGene
656213
GenAtlas
JAK2
Internet
Search Google