KEGG   PATHWAY: stru04115
Entry
stru04115                   Pathway                                
Name
p53 signaling pathway - Salmo trutta (river trout)
Description
p53 activation is induced by a number of stress signals, including DNA damage, oxidative stress and activated oncogenes. The p53 protein is employed as a transcriptional activator of p53-regulated genes. This results in three major outputs; cell cycle arrest, cellular senescence or apoptosis. Other p53-regulated gene functions communicate with adjacent cells, repair the damaged DNA or set up positive and negative feedback loops that enhance or attenuate the functions of the p53 protein and integrate these stress responses with other signal transduction pathways.
Class
Cellular Processes; Cell growth and death
Pathway map
stru04115  p53 signaling pathway
stru04115

Organism
Salmo trutta (river trout) [GN:stru]
Gene
115147613  tsc2; tuberin isoform X1 [KO:K07207]
115148900  [KO:K10134]
115149007  [KO:K10141]
115149508  [KO:K10146]
115149965  [KO:K10135]
115150453  [KO:K02161]
115150457  cdk2; cyclin-dependent kinase 2 [KO:K02206] [EC:2.7.11.22]
115150473  [KO:K02089] [EC:2.7.11.22]
115150581  [KO:K26543]
115150615  [KO:K06625]
115150620  [KO:K10152]
115150673  mdm4; protein Mdm4 isoform X1 [KO:K10127]
115150840  [KO:K04570]
115151646  [KO:K04402]
115151925  [KO:K04506] [EC:2.3.2.27]
115152238  [KO:K10151]
115152358  [KO:K04503]
115152433  [KO:K06509]
115152840  [KO:K10136]
115153219  [KO:K01110] [EC:3.1.3.16 3.1.3.48 3.1.3.67]
115153220  [KO:K04390]
115153283  [KO:K02087] [EC:2.7.11.22 2.7.11.23]
115154360  [KO:K10134]
115154466  [KO:K10141]
115154589  [KO:K10147] [EC:3.1.3.16]
115154926  [KO:K04451]
115155485  [KO:K08738]
115155490  [KO:K04398] [EC:3.4.22.61]
115156092  rprm; protein reprimo [KO:K10128]
115156330  [KO:K16857]
115156711  [KO:K04402]
115156993  [KO:K10143] [EC:2.3.2.27]
115157104  [KO:K01110] [EC:3.1.3.16 3.1.3.48 3.1.3.67]
115157106  [KO:K02161]
115157128  [KO:K10138]
115157338  [KO:K04398] [EC:3.4.22.61]
115158081  [KO:K04402]
115158423  zmat3; zinc finger matrin-type protein 3 isoform X1 [KO:K10137]
115158595  [KO:K04402]
115158654  [KO:K10138]
115158757  gorab; RAB6-interacting golgin isoform X1 [KO:K19748]
115159595  [KO:K05868]
115159678  [KO:K04722]
115160147  [KO:K10146]
115160226  [KO:K04402]
115160227  [KO:K04402]
115160790  [KO:K08738]
115160794  [KO:K04398] [EC:3.4.22.61]
115161077  [KO:K10142] [EC:1.16.1.-]
115161971  tp53i3; quinone oxidoreductase PIG3 [KO:K10133] [EC:1.-.-.-]
115162365  [KO:K16857]
115162384  [KO:K22744]
115163682  cntd2; cyclin N-terminal domain-containing protein 2 [KO:K21770]
115163815  [KO:K10147] [EC:3.1.3.16]
115164187  [KO:K04402]
115164264  [KO:K04722]
115164279  [KO:K02187] [EC:3.4.22.56]
115164773  [KO:K10146]
115164786  [KO:K10144] [EC:2.3.2.27]
115164873  [KO:K06641] [EC:2.7.11.1]
115165489  [KO:K26543]
115165630  casp9; caspase-9 isoform X1 [KO:K04399] [EC:3.4.22.62]
115165991  [KO:K04570]
115166096  tp73; tumor protein p73 isoform X1 [KO:K10148]
115166694  [KO:K06509]
115167247  [KO:K21770]
115167423  [KO:K10145]
115167446  ccne1; G1/S-specific cyclin-E1 [KO:K06626]
115167492  [KO:K04503]
115167497  [KO:K02159]
115167832  [KO:K26543]
115167973  [KO:K04399] [EC:3.4.22.62]
115168617  [KO:K04570]
115168818  [KO:K10128]
115169467  [KO:K04398] [EC:3.4.22.61]
115169468  [KO:K04398] [EC:3.4.22.61]
115169642  [KO:K10138]
115169669  [KO:K02161]
115169777  cop1; E3 ubiquitin-protein ligase COP1 isoform X1 [KO:K10143] [EC:2.3.2.27]
115169986  [KO:K04402]
115170698  [KO:K10151]
115170832  [KO:K02159]
115171057  [KO:K02091] [EC:2.7.11.22]
115171149  [KO:K02159]
115172402  [KO:K10141]
115172646  [KO:K16857]
115172665  [KO:K22744]
115173302  [KO:K04596]
115173932  [KO:K08738]
115174024  [KO:K02091] [EC:2.7.11.22]
115174433  [KO:K10141]
115174977  [KO:K10808] [EC:1.17.4.1]
115175127  [KO:K16857]
115175534  [KO:K02091] [EC:2.7.11.22]
115176241  [KO:K10808] [EC:1.17.4.1]
115176573  [KO:K10141]
115176645  [KO:K06626]
115176753  [KO:K04596]
115179380  [KO:K08738]
115179606  ccne2; G1/S-specific cyclin-E2 [KO:K06626]
115179628  [KO:K10142] [EC:1.16.1.-]
115180292  [KO:K02084]
115180438  [KO:K06625]
115180501  [KO:K05459]
115180633  [KO:K10151]
115181953  [KO:K04596]
115182075  [KO:K06643] [EC:2.3.2.27]
115182930  [KO:K06643] [EC:2.3.2.27]
115189372  [KO:K20394]
115192071  [KO:K02187] [EC:3.4.22.56]
115192161  [KO:K02159]
115192277  [KO:K10138]
115192326  [KO:K04402]
115192471  [KO:K10137]
115192765  gtse1; G2 and S phase-expressed protein 1 [KO:K10129]
115192930  [KO:K10130]
115192953  [KO:K10140]
115193676  [KO:K02087] [EC:2.7.11.22 2.7.11.23]
115193754  [KO:K04390]
115193756  [KO:K01110] [EC:3.1.3.16 3.1.3.48 3.1.3.67]
115193877  aifm2; apoptosis-inducing factor 2 [KO:K22745]
115194175  [KO:K04451]
115194599  [KO:K03982]
115194956  rrm2; ribonucleoside-diphosphate reductase subunit M2 [KO:K10808] [EC:1.17.4.1]
115195542  [KO:K02161]
115196070  [KO:K10142] [EC:1.16.1.-]
115196220  [KO:K06640] [EC:2.7.11.1]
115196839  siah1; E3 ubiquitin-protein ligase SIAH1 isoform X1 [KO:K04506] [EC:2.3.2.27]
115197442  [KO:K10151]
115197603  [KO:K04503]
115197702  [KO:K06509]
115198177  [KO:K04451]
115198352  [KO:K02159]
115198360  [KO:K02159]
115198564  [KO:K03982]
115198721  [KO:K06625]
115198916  [KO:K10151]
115198940  [KO:K05459]
115199073  [KO:K02084]
115199789  [KO:K06641] [EC:2.7.11.1]
115199867  rchy1; RING finger and CHY zinc finger domain-containing protein 1 [KO:K10144] [EC:2.3.2.27]
115199877  [KO:K10146]
115200388  [KO:K04722]
115200447  [KO:K04402]
115200978  [KO:K06509]
115201167  [KO:K01110] [EC:3.1.3.16 3.1.3.48 3.1.3.67]
115201494  [KO:K10136]
115202749  [KO:K04402]
115202750  [KO:K04402]
115202897  [KO:K02159]
115202935  [KO:K06626]
115202965  [KO:K04503]
115203015  [KO:K05868]
115203583  [KO:K06509]
115203974  [KO:K04722]
115204043  [KO:K05868]
115204711  chek1; serine/threonine-protein kinase Chk1 [KO:K02216] [EC:2.7.11.1]
115204775  [KO:K10151]
115205226  [KO:K10141]
115205518  [KO:K02187] [EC:3.4.22.56]
115205693  [KO:K10145]
115206406  atm; serine-protein kinase ATM isoform X1 [KO:K04728] [EC:2.7.11.1]
115206679  [KO:K10147] [EC:3.1.3.16]
115206702  ppp1r13l; relA-associated inhibitor [KO:K27356]
115207216  [KO:K10135]
115207590  [KO:K04570]
115207794  [KO:K06625]
115207825  [KO:K26543]
115207950  [KO:K02089] [EC:2.7.11.22]
115207965  [KO:K02206] [EC:2.7.11.22]
Reference
  Authors
Levine AJ, Hu W, Feng Z.
  Title
The P53 pathway: what questions remain to be explored?
  Journal
Cell Death Differ 13:1027-36 (2006)
DOI:10.1038/sj.cdd.4401910
Reference
  Authors
Harris SL, Levine AJ.
  Title
The p53 pathway: positive and negative feedback loops.
  Journal
Oncogene 24:2899-908 (2005)
DOI:10.1038/sj.onc.1208615
Reference
  Authors
Balint E E, Vousden KH.
  Title
Activation and activities of the p53 tumour suppressor protein.
  Journal
Br J Cancer 85:1813-23 (2001)
DOI:10.1054/bjoc.2001.2128
Reference
  Authors
Taylor WR, Stark GR.
  Title
Regulation of the G2/M transition by p53.
  Journal
Oncogene 20:1803-15 (2001)
DOI:10.1038/sj.onc.1204252
Reference
  Authors
Hofseth LJ, Hussain SP, Harris CC.
  Title
p53: 25 years after its discovery.
  Journal
Trends Pharmacol Sci 25:177-81 (2004)
DOI:10.1016/j.tips.2004.02.009
Reference
  Authors
Pietenpol JA, Stewart ZA.
  Title
Cell cycle checkpoint signaling: cell cycle arrest versus apoptosis.
  Journal
Toxicology 181-182:475-81 (2002)
DOI:10.1016/S0300-483X(02)00460-2
Reference
  Authors
Tokino T, Nakamura Y.
  Title
The role of p53-target genes in human cancer.
  Journal
Crit Rev Oncol Hematol 33:1-6 (2000)
DOI:10.1016/S1040-8428(99)00051-7
Reference
  Authors
Hermeking H, Benzinger A.
  Title
14-3-3 proteins in cell cycle regulation.
  Journal
Semin Cancer Biol 16:183-92 (2006)
DOI:10.1016/j.semcancer.2006.03.002
Reference
  Authors
Sherr CJ.
  Title
Divorcing ARF and p53: an unsettled case.
  Journal
Nat Rev Cancer 6:663-73 (2006)
DOI:10.1038/nrc1954
Reference
  Authors
Feng Z, Hu W, de Stanchina E, Teresky AK, Jin S, Lowe S, Levine AJ.
  Title
The regulation of AMPK beta1, TSC2, and PTEN expression by p53: stress, cell and tissue specificity, and the role of these gene products in modulating the IGF-1-AKT-mTOR pathways.
  Journal
Cancer Res 67:3043-53 (2007)
DOI:10.1158/0008-5472.CAN-06-4149
Reference
  Authors
Resnick-Silverman L, Manfredi JJ
  Title
Two Faces of SIVA.
  Journal
Cancer Discov 5:581-3 (2015)
DOI:10.1158/2159-8290.CD-15-0484
Reference
  Authors
Resch U, Schichl YM, Winsauer G, Gudi R, Prasad K, de Martin R
  Title
Siva1 is a XIAP-interacting protein that balances NFkappaB and JNK signalling to promote apoptosis.
  Journal
J Cell Sci 122:2651-61 (2009)
DOI:10.1242/jcs.049940
Reference
  Authors
Barkinge JL, Gudi R, Sarah H, Chu F, Borthakur A, Prabhakar BS, Prasad KV
  Title
The p53-induced Siva-1 plays a significant role in cisplatin-mediated apoptosis.
  Journal
J Carcinog 8:2 (2009)
DOI:10.4103/1477-3163.45389
Reference
  Authors
Ohiro Y, Garkavtsev I, Kobayashi S, Sreekumar KR, Nantz R, Higashikubo BT, Duffy SL, Higashikubo R, Usheva A, Gius D, Kley N, Horikoshi N
  Title
A novel p53-inducible apoptogenic gene, PRG3, encodes a homologue of the apoptosis-inducing factor (AIF).
  Journal
FEBS Lett 524:163-71 (2002)
DOI:10.1016/S0014-5793(02)03049-1
Reference
  Authors
Hu Y, Ge W, Wang X, Sutendra G, Zhao K, Dedeic Z, Slee EA, Baer C, Lu X
  Title
Caspase cleavage of iASPP potentiates its ability to inhibit p53 and NF-kappaB.
  Journal
Oncotarget 6:42478-90 (2015)
DOI:10.18632/oncotarget.6478
Related
pathway
stru04110  Cell cycle
stru04210  Apoptosis
stru04218  Cellular senescence
KO pathway
ko04115   

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