MAPK signaling pathway (Gallus gallus)

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2-101Proliferation, inflammation, anti-apoptosisSerum, cytotoxic drugs, irradiation,heatshock, reactive oxy speciesLPS and other stressPTPDNAIP3DNAHeteromeric G-proteinPhosphatidylinositolsignaling systemMAPKKERK5 pathwayJNK & p38 MAP kinase pathwayDNAMKPJNKCellDNALPSDNATranscription factorsMAPKKKMAPKPTPCa2+Serum, EGF,reactive oxygen species.or Srk tyrokinase downstreamProliferation, differentiationApoptosisMAPKKKKProliferation, differentiation,inflammationProliferation, differentiationDNA damageClassical MAP kinase PathwayWnt signaling pathwayp38CycleDAGp53 signaling pathwayMAP3K7IP2mnk1/2GNA12FASMEF2CPRKCGMAP3K5TP53HSPB1NLKPLA2G5DAXXMEKK2/3MAPK9FOScAMPRAC1IL1AMAP2K2CRKDDIT3MAPK3ELK1MAPK4CASP9PRKCDPPP5CDUSP10IKBKBPPP3R2NTRK1RAF1PPM1BAKT3DUSP5RCJMB04_24n15RASGRP1FLNAMAP4K1STMN1TGFBR1MAP2K1IP1CRKLACVR1BRCJMB04_36h7TGFB1MAP2K6PPP3CAHSPA5PPM1APRKCZPPP3CCGADD45ABDNFARRB1ATF4ATF2TAOK1HSPB2ACVR1CPTPN5CDC42fgfrMAPK14PRKCDPDGFBPRKACAMAPK8IP3DUSP7MAP3K1RAC2MAP2K7FGF4JUNDPRKCHSOS2MAPK7KRASGCKSTK3DUSP4CASP8NRASMAPK12MRASPTPN7MAXTGFBR2NF1RASA2AKT2MAP3K14NTF5sap1aSITPECRCJMB04_5i17Sap1aPTPRRRAP1BMAPK10DUSP1FASLGCASP3RASGRF2SRFCD14mkk3CASP7MAP3K7IP1JUNTGFB3TPTEEGFMAP3K6PTPN5ZAKMAP4K4MYCmsk1/2TRAF6GRB2MAPK1PDGFRBARRB2TMEM37CASP1AKT1RASA1MAP3K4MAPK13CASP6IL1BMAP2K4MINK1MAP3K8IL1R2RAP1APAK1MAPKAPK2PTPN7MAP4K3EGFRBRAFTNFMAPTMAPK8CDC25BPLA2G10DUSP6RASGRP4CASP2NR4A1TRAF2IKBKGnfat2/4PPP3R1TGFB2HSPA8MAPKAPK5RPS6KA3MAP3K13MAP2K1ATF4TAOK2MOSHSPA1AMAP3K7MAP3K12PAK2MAP3K11NGFBPTPRRPRKCBNFKB1IL1R1


Description

The mitogen-activated protein kinase (MAPK) cascade is a highly conserved module that is involved in various cellular functions, including cell proliferation, differentiation and migration. Mammals express at least four distinctly regulated groups of MAPKs, extracellular signal-related kinases (ERK)-1/2, Jun amino-terminal kinases (JNK1/2/3), p38 proteins (p38alpha/beta/gamma/delta) and ERK5, that are activated by specific MAPKKs: MEK1/2 for ERK1/2, MKK3/6 for the p38, MKK4/7 (JNKK1/2) for the JNKs, and MEK5 for ERK5. Each MAPKK, however, can be activated by more than one MAPKKK, increasing the complexity and diversity of MAPK signalling. Presumably each MAPKKK confers responsiveness to distinct stimuli. For example, activation of ERK1/2 by growth factors depends on the MAPKKK c-Raf, but other MAPKKKs may activate ERK1/2 in response to pro-inflammatory stimuli. Source: KEGG http://www.genome.jp/dbget-bin/www_bget?pathway:map04010

Comments

GenMAPP remarks 
Converted to human by GenMAPP.org
 
This pathway was inferred from Homo sapiens pathway WP382(r28779) with a 65% conversion rate.

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Ontology Terms

 

Bibliography

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  1. Zhu X, Lee HG, Raina AK, Perry G, Smith MA; ''The role of mitogen-activated protein kinase pathways in Alzheimer's disease.''; Neurosignals, 2002 PubMed Europe PMC Scholia
  2. Takeda K, Ichijo H; ''Neuronal p38 MAPK signalling: an emerging regulator of cell fate and function in the nervous system.''; Genes Cells, 2002 PubMed Europe PMC Scholia
  3. Tanoue T, Nishida E; ''Docking interactions in the mitogen-activated protein kinase cascades.''; Pharmacol Ther, 2002 PubMed Europe PMC Scholia
  4. Huang EJ, Reichardt LF; ''Trk receptors: roles in neuronal signal transduction.''; Annu Rev Biochem, 2003 PubMed Europe PMC Scholia
  5. Yang SH, Sharrocks AD, Whitmarsh AJ; ''Transcriptional regulation by the MAP kinase signaling cascades.''; Gene, 2003 PubMed Europe PMC Scholia
  6. Cho H, Lee J, Kwak NJ, Lee KH, Rha S, Kim YH, Cho YY, Yang KH, Kim K, Lim Y; ''Silica induces nuclear factor-kappaB activation through TAK1 and NIK in Rat2 cell line.''; Toxicol Lett, 2003 PubMed Europe PMC Scholia
  7. Harper SJ, LoGrasso P; ''Signalling for survival and death in neurones: the role of stress-activated kinases, JNK and p38.''; Cell Signal, 2001 PubMed Europe PMC Scholia
  8. Chen Z, Gibson TB, Robinson F, Silvestro L, Pearson G, Xu B, Wright A, Vanderbilt C, Cobb MH; ''MAP kinases.''; Chem Rev, 2001 PubMed Europe PMC Scholia
  9. Dent P, Yacoub A, Fisher PB, Hagan MP, Grant S; ''MAPK pathways in radiation responses.''; Oncogene, 2003 PubMed Europe PMC Scholia
  10. Abell AN, Granger DA, Johnson GL; ''MEKK4 stimulation of p38 and JNK activity is negatively regulated by GSK3beta.''; J Biol Chem, 2007 PubMed Europe PMC Scholia
  11. Chen CY, Weng YH, Chien KY, Lin KJ, Yeh TH, Cheng YP, Lu CS, Wang HL; ''(G2019S) LRRK2 activates MKK4-JNK pathway and causes degeneration of SN dopaminergic neurons in a transgenic mouse model of PD.''; Cell Death Differ, 2012 PubMed Europe PMC Scholia

History

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CompareRevisionActionTimeUserComment
117209view09:24, 19 May 2021EweitzModified title
113901view06:41, 8 December 2020EgonwMade three pathway nodes clickable
106113view12:01, 16 August 2019MaintBotHMDB identifier normalization
105689view21:00, 13 August 2019Khanspersremoved human-specific drug targeting and mutation
96344view09:30, 9 March 2018EgonwReplaced secondary ChEBI identifiers with primary identifiers.
95781view14:34, 19 January 2018MkutmonHomology conversion update
95119view15:03, 16 November 2017Mkutmonmissing homology converter comment source
95111view14:44, 16 November 2017DeSlFixed nested groups.
82861view14:48, 10 November 2015Mkutmoncorrected outdated identifiers
74228view15:24, 8 April 2014EgonwRemoved a data source where no ID was given.
68869view17:21, 8 July 2013MaintBotUpdated to 2013 gpml schema
67446view11:03, 26 June 2013DdiglesOntology Term : 'mitogen activated protein kinase signaling pathway' added !
47784view16:17, 6 April 2012Khanspersupdated xref
41008view22:57, 1 March 2011MaintBotRemoved redundant pathway information and comments
35665view22:30, 12 February 2010KhanspersDescription and lit refs
33929view18:10, 9 December 2009MaintBotAutomatic update of empty xrefs
33452view15:00, 30 November 2009MaintBotRemoved group label
31504view21:34, 13 August 2009MaintBotFixed text labels
30338view20:48, 29 July 2009MaintBotNew pathway

External references

DataNodes

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NameTypeDatabase referenceComment
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Annotated Interactions

No annotated interactions