Costimulation by the CD28 family (Homo sapiens)

From WikiPathways

Revision as of 08:53, 30 April 2014 by ReactomeTeam (Talk | contribs)
Jump to: navigation, search
1-331, 3210, 11425, 643391821, 22, 24, 2514, 15948, 491336, 3744, 467, 819, 201712482848, 4926, 2744-4621-2336, 3829, 305, 61640, 4144-4733-35cytosolcytosolPP2AATPADPCD28 bound to B7 ligandsPD-1 ligandsATPSHP-2/SHP-1CD28:B7-1Activated Rac-1 and Cdc42OrthophosphateSrc family tyrosine kinasespyrophosphatePhosphorylated PD-1 bound to B7DC/B7H1ADPPhosphorylated CTLA-4 bound to kinasesC-terminal modulator proteinATPGRB2Antigen-bearing MHC Class II: TCR with phosphorylated ITAMs:CD4SHP2PP2A:CTLA4:B7-1/B7-2PDK1:AKTPhosphatidylinositol-3,4,5-trisphosphateICOSLpBTLA-HVEM complexPIP3:PDK1:active AKTATPHVEMB7-1 homodimer/ B7-2PI3K alphaICOS:PI3KpVav1:PIP3:Grb2:CD28PDK1:AKT:PIP3BTLA-HVEM complexphospho CD28:B7-1/B7-2GRB2-related adapter protein 2GTPPD-1:PD-1 ligandsADPPAK bound to Rac1 and Cdc42ADPPAKSHP-2/SHP-1PDK1:AKT:PIP3Tribbles homolog 3ATPLck/CskICOS:ICOSLCD28:B7-2GDPFYNPI3K alphaPD-1Phosphatidylinositol-4,5-bisphosphatepCTLA-4:Src kinases:SHP2CD28:Grb2ATPCD28:GadsAntigen-bearing MHC Class II: TCR with dephosphorylated CD3 zeta chain:CD4ADPSHP-1/SHP-2 bound to phospho PD-1CTLA-4 homodimerPIP3:PDK1:Phospho-AKTPP2AATPCDC42-GTPCD86 monomerVav1 bound to PIP3 and Grb2:CD28ADPADPGRB2CD28 homodimerADPATPSrc family tyrosine kinasesAkt:pCot:pNIKPhosphatidylinositol-3,4,5-trisphosphateGrb2:pBTLA:HVEMGTPCDC42-GDPVAV1CD28:PI3KRAC1-GDPCD80 (B7-1) homodimerCTLA-4:PP2ALck/FynGDPB- and T-lymphocyte attenuator precursorTORC2 complexRAC1-GTPAkt:pCotNikPAK homodimerICOSPIP3:PDK1:active AKTADPSHP-1/SHP-2:pBTLA:HVEMPhosphorylated ICOSTPL2ATP4


Description

Optimal activation of T-lymphocytes requires at least two signals. A primary one is delivered by the T-cell receptor (TCR) complex after antigen recognition and additional costimulatory signals are delivered by the engagement of costimulatory receptors such as CD28. The best-characterized costimulatory pathways are mediated by a set of cosignaling molecules belonging to the CD28 superfamily, including CD28, CTLA4, ICOS, PD1 and BTLA receptors. These proteins deliver both positive and negative second signals to T-cells by interacting with B7 family ligands expressed on antigen presenting cells. Different subsets of T-cells have very different requirements for costimulation. CD28 family mediated costimulation is not required for all T-cell responses in vivo, and alternative costimulatory pathways also exist. Different receptors of the CD28 family and their ligands have different regulation of expression. CD28 is constitutively expressed on naive T cells whereas CTLA4 expression is dependent on CD28/B7 engagement and the other receptor members ICOS, PD1 and BTLA are induced after initial T-cell stimulation.
The positive signals induced by CD28 and ICOS molecules are counterbalanced by other members of the CD28 family, including cytotoxic T-lymphocyte associated antigen (CTLA)4, programmed cell death (PD)1, and B and T lymphocyte attenuator (BTLA), which dampen immune responses. The balance of stimulatory and inhibitory signals is crucial to maximize protective immune responses while maintaining immunological tolerance and preventing autoimmunity.
The costimulatory receptors CD28, CTLA4, ICOS and PD1 are composed of single extracellular IgV-like domains, whereas BTLA has one IgC-like domain. Receptors CTLA4, CD28 and ICOS are covalent homodimers, due to an interchain disulphide linkage. The costimulatory ligands B71, B72, B7H2, B7H1 and B7DC, have a membrane proximal IgC-like domain and a membrane distal IgV-like domain that is responsible for receptor binding and dimerization. CD28 and CTLA4 have no known intrinsic enzymatic activity. Instead, engagement by their physiologic ligands B71 and B72 leads to the physical recruitment and activation of downstream T-cell effector molecules.

Try the New WikiPathways

View approved pathways at the new wikipathways.org.

Quality Tags

Ontology Terms

 

Bibliography

View all...
  1. Streuli M, Hall LR, Saga Y, Schlossman SF, Saito H.; ''Differential usage of three exons generates at least five different mRNAs encoding human leukocyte common antigens.''; PubMed Europe PMC Scholia
  2. Szczepanowska J.; ''Involvement of Rac/Cdc42/PAK pathway in cytoskeletal rearrangements.''; PubMed Europe PMC Scholia
  3. Rudd CE, Schneider H.; ''Unifying concepts in CD28, ICOS and CTLA4 co-receptor signalling.''; PubMed Europe PMC Scholia
  4. Ellis JH, Burden MN, Vinogradov DV, Linge C, Crowe JS.; ''Interactions of CD80 and CD86 with CD28 and CTLA4.''; PubMed Europe PMC Scholia
  5. Schneider H, Rudd CE.; ''Tyrosine phosphatase SHP-2 binding to CTLA-4: absence of direct YVKM/YFIP motif recognition.''; PubMed Europe PMC Scholia
  6. Migden MR, Rischin D, Schmults CD, Guminski A, Hauschild A, Lewis KD, Chung CH, Hernandez-Aya L, Lim AM, Chang ALS, Rabinowits G, Thai AA, Dunn LA, Hughes BGM, Khushalani NI, Modi B, Schadendorf D, Gao B, Seebach F, Li S, Li J, Mathias M, Booth J, Mohan K, Stankevich E, Babiker HM, Brana I, Gil-Martin M, Homsi J, Johnson ML, Moreno V, Niu J, Owonikoko TK, Papadopoulos KP, Yancopoulos GD, Lowy I, Fury MG.; ''PD-1 Blockade with Cemiplimab in Advanced Cutaneous Squamous-Cell Carcinoma.''; PubMed Europe PMC Scholia
  7. Woo SY, Kim DH, Jun CB, Kim YM, Haar EV, Lee SI, Hegg JW, Bandhakavi S, Griffin TJ, Kim DH.; ''PRR5, a novel component of mTOR complex 2, regulates platelet-derived growth factor receptor beta expression and signaling.''; PubMed Europe PMC Scholia
  8. Koyasu S.; ''The role of PI3K in immune cells.''; PubMed Europe PMC Scholia
  9. Hall RD, Gray JE, Chiappori AA.; ''Beyond the standard of care: a review of novel immunotherapy trials for the treatment of lung cancer.''; PubMed Europe PMC Scholia
  10. Alegre ML, Frauwirth KA, Thompson CB.; ''T-cell regulation by CD28 and CTLA-4.''; PubMed Europe PMC Scholia
  11. Sheppard KA, Fitz LJ, Lee JM, Benander C, George JA, Wooters J, Qiu Y, Jussif JM, Carter LL, Wood CR, Chaudhary D.; ''PD-1 inhibits T-cell receptor induced phosphorylation of the ZAP70/CD3zeta signalosome and downstream signaling to PKCtheta.''; PubMed Europe PMC Scholia
  12. Sarbassov DD, Guertin DA, Ali SM, Sabatini DM.; ''Phosphorylation and regulation of Akt/PKB by the rictor-mTOR complex.''; PubMed Europe PMC Scholia
  13. Crespo P, Schuebel KE, Ostrom AA, Gutkind JS, Bustelo XR.; ''Phosphotyrosine-dependent activation of Rac-1 GDP/GTP exchange by the vav proto-oncogene product.''; PubMed Europe PMC Scholia
  14. Manser E, Leung T, Salihuddin H, Zhao ZS, Lim L.; ''A brain serine/threonine protein kinase activated by Cdc42 and Rac1.''; PubMed Europe PMC Scholia
  15. Vijayakrishnan L, Slavik JM, Illés Z, Greenwald RJ, Rainbow D, Greve B, Peterson LB, Hafler DA, Freeman GJ, Sharpe AH, Wicker LS, Kuchroo VK.; ''An autoimmune disease-associated CTLA-4 splice variant lacking the B7 binding domain signals negatively in T cells.''; PubMed Europe PMC Scholia
  16. Scheid MP, Marignani PA, Woodgett JR.; ''Multiple phosphoinositide 3-kinase-dependent steps in activation of protein kinase B.''; PubMed Europe PMC Scholia
  17. Schneider H, Cai YC, Prasad KV, Shoelson SE, Rudd CE.; ''T cell antigen CD28 binds to the GRB-2/SOS complex, regulators of p21ras.''; PubMed Europe PMC Scholia
  18. Teft WA, Chau TA, Madrenas J.; ''Structure-Function analysis of the CTLA-4 interaction with PP2A.''; PubMed Europe PMC Scholia
  19. Meier R, Alessi DR, Cron P, Andjelković M, Hemmings BA.; ''Mitogenic activation, phosphorylation, and nuclear translocation of protein kinase Bbeta.''; PubMed Europe PMC Scholia
  20. Parrini MC, Lei M, Harrison SC, Mayer BJ.; ''Pak1 kinase homodimers are autoinhibited in trans and dissociated upon activation by Cdc42 and Rac1.''; PubMed Europe PMC Scholia
  21. Murphy KM, Nelson CA, Sedý JR.; ''Balancing co-stimulation and inhibition with BTLA and HVEM.''; PubMed Europe PMC Scholia
  22. Sedy JR, Gavrieli M, Potter KG, Hurchla MA, Lindsley RC, Hildner K, Scheu S, Pfeffer K, Ware CF, Murphy TL, Murphy KM.; ''B and T lymphocyte attenuator regulates T cell activation through interaction with herpesvirus entry mediator.''; PubMed Europe PMC Scholia
  23. Watanabe R, Harada Y, Takeda K, Takahashi J, Ohnuki K, Ogawa S, Ohgai D, Kaibara N, Koiwai O, Tanabe K, Toma H, Sugamura K, Abe R.; ''Grb2 and Gads exhibit different interactions with CD28 and play distinct roles in CD28-mediated costimulation.''; PubMed Europe PMC Scholia
  24. Teft WA, Kirchhof MG, Madrenas J.; ''A molecular perspective of CTLA-4 function.''; PubMed Europe PMC Scholia
  25. Sadra A, Cinek T, Arellano JL, Shi J, Truitt KE, Imboden JB.; ''Identification of tyrosine phosphorylation sites in the CD28 cytoplasmic domain and their role in the costimulation of Jurkat T cells.''; PubMed Europe PMC Scholia
  26. Currie RA, Walker KS, Gray A, Deak M, Casamayor A, Downes CP, Cohen P, Alessi DR, Lucocq J.; ''Role of phosphatidylinositol 3,4,5-trisphosphate in regulating the activity and localization of 3-phosphoinositide-dependent protein kinase-1.''; PubMed Europe PMC Scholia
  27. Han J, Das B, Wei W, Van Aelst L, Mosteller RD, Khosravi-Far R, Westwick JK, Der CJ, Broek D.; ''Lck regulates Vav activation of members of the Rho family of GTPases.''; PubMed Europe PMC Scholia
  28. Schwartz JC, Zhang X, Nathenson SG, Almo SC.; ''Structural mechanisms of costimulation.''; PubMed Europe PMC Scholia
  29. Markham A, Keam SJ.; ''Camrelizumab: First Global Approval.''; PubMed Europe PMC Scholia
  30. Tan S, Zhang H, Chai Y, Song H, Tong Z, Wang Q, Qi J, Wong G, Zhu X, Liu WJ, Gao S, Wang Z, Shi Y, Yang F, Gao GF, Yan J.; ''An unexpected N-terminal loop in PD-1 dominates binding by nivolumab.''; PubMed Europe PMC Scholia
  31. Slavik JM, Hutchcroft JE, Bierer BE.; ''CD28/CTLA-4 and CD80/CD86 families: signaling and function.''; PubMed Europe PMC Scholia
  32. Teng JM, King PD, Sadra A, Liu X, Han A, Selvakumar A, August A, Dupont B.; ''Phosphorylation of each of the distal three tyrosines of the CD28 cytoplasmic tail is required for CD28-induced T cell IL-2 secretion.''; PubMed Europe PMC Scholia
  33. Richter G, Burdach S.; ''ICOS: a new costimulatory ligand/receptor pair and its role in T-cell activion.''; PubMed Europe PMC Scholia
  34. Delcommenne M, Tan C, Gray V, Rue L, Woodgett J, Dedhar S.; ''Phosphoinositide-3-OH kinase-dependent regulation of glycogen synthase kinase 3 and protein kinase B/AKT by the integrin-linked kinase.''; PubMed Europe PMC Scholia
  35. Acuto O, Michel F.; ''CD28-mediated co-stimulation: a quantitative support for TCR signalling.''; PubMed Europe PMC Scholia
  36. Daniels RH, Bokoch GM.; ''p21-activated protein kinase: a crucial component of morphological signaling?''; PubMed Europe PMC Scholia
  37. Hehner SP, Hofmann TG, Dienz O, Droge W, Schmitz ML.; ''Tyrosine-phosphorylated Vav1 as a point of integration for T-cell receptor- and CD28-mediated activation of JNK, p38, and interleukin-2 transcription.''; PubMed Europe PMC Scholia
  38. Masteller EL, Chuang E, Mullen AC, Reiner SL, Thompson CB.; ''Structural analysis of CTLA-4 function in vivo.''; PubMed Europe PMC Scholia
  39. Nurieva RI.; ''Regulation of immune and autoimmune responses by ICOS-B7h interaction.''; PubMed Europe PMC Scholia
  40. Zhang B, Chernoff J, Zheng Y.; ''Interaction of Rac1 with GTPase-activating proteins and putative effectors. A comparison with Cdc42 and RhoA.''; PubMed Europe PMC Scholia
  41. Lei M, Lu W, Meng W, Parrini MC, Eck MJ, Mayer BJ, Harrison SC.; ''Structure of PAK1 in an autoinhibited conformation reveals a multistage activation switch.''; PubMed Europe PMC Scholia
  42. Burgering BM, Coffer PJ.; ''Protein kinase B (c-Akt) in phosphatidylinositol-3-OH kinase signal transduction.''; PubMed Europe PMC Scholia
  43. Tybulewicz VL.; ''Vav-family proteins in T-cell signalling.''; PubMed Europe PMC Scholia
  44. Fife BT, Bluestone JA.; ''Control of peripheral T-cell tolerance and autoimmunity via the CTLA-4 and PD-1 pathways.''; PubMed Europe PMC Scholia
  45. Yaghoubi N, Soltani A, Ghazvini K, Hassanian SM, Hashemy SI.; ''PD-1/ PD-L1 blockade as a novel treatment for colorectal cancer.''; PubMed Europe PMC Scholia
  46. Miyatake S, Nakaseko C, Umemori H, Yamamoto T, Saito T.; ''Src family tyrosine kinases associate with and phosphorylate CTLA-4 (CD152).''; PubMed Europe PMC Scholia
  47. Youngnak P, Kozono Y, Kozono H, Iwai H, Otsuki N, Jin H, Omura K, Yagita H, Pardoll DM, Chen L, Azuma M.; ''Differential binding properties of B7-H1 and B7-DC to programmed death-1.''; PubMed Europe PMC Scholia
  48. Watanabe N, Gavrieli M, Sedy JR, Yang J, Fallarino F, Loftin SK, Hurchla MA, Zimmerman N, Sim J, Zang X, Murphy TL, Russell JH, Allison JP, Murphy KM.; ''BTLA is a lymphocyte inhibitory receptor with similarities to CTLA-4 and PD-1.''; PubMed Europe PMC Scholia
  49. Kane LP, Weiss A.; ''The PI-3 kinase/Akt pathway and T cell activation: pleiotropic pathways downstream of PIP3.''; PubMed Europe PMC Scholia
  50. Han J, Luby-Phelps K, Das B, Shu X, Xia Y, Mosteller RD, Krishna UM, Falck JR, White MA, Broek D.; ''Role of substrates and products of PI 3-kinase in regulating activation of Rac-related guanosine triphosphatases by Vav.''; PubMed Europe PMC Scholia
  51. Schneider H, Rudd CE.; ''CD28 and Grb-2, relative to Gads or Grap, preferentially co-operate with Vav1 in the activation of NFAT/AP-1 transcription.''; PubMed Europe PMC Scholia
  52. Kline J, Gajewski TF.; ''Clinical development of mAbs to block the PD1 pathway as an immunotherapy for cancer.''; PubMed Europe PMC Scholia
  53. Baroja ML, Vijayakrishnan L, Bettelli E, Darlington PJ, Chau TA, Ling V, Collins M, Carreno BM, Madrenas J, Kuchroo VK.; ''Inhibition of CTLA-4 function by the regulatory subunit of serine/threonine phosphatase 2A.''; PubMed Europe PMC Scholia
  54. Burova E, Hermann A, Waite J, Potocky T, Lai V, Hong S, Liu M, Allbritton O, Woodruff A, Wu Q, D'Orvilliers A, Garnova E, Rafique A, Poueymirou W, Martin J, Huang T, Skokos D, Kantrowitz J, Popke J, Mohrs M, MacDonald D, Ioffe E, Olson W, Lowy I, Murphy A, Thurston G.; ''Characterization of the Anti-PD-1 Antibody REGN2810 and Its Antitumor Activity in Human PD-1 Knock-In Mice.''; PubMed Europe PMC Scholia
  55. Kane LP, Mollenauer MN, Xu Z, Turck CW, Weiss A.; ''Akt-dependent phosphorylation specifically regulates Cot induction of NF-kappa B-dependent transcription.''; PubMed Europe PMC Scholia
  56. Wittwer T, Schmitz ML.; ''NIK and Cot cooperate to trigger NF-kappaB p65 phosphorylation.''; PubMed Europe PMC Scholia
  57. Michel F, Grimaud L, Tuosto L, Acuto O.; ''Fyn and ZAP-70 are required for Vav phosphorylation in T cells stimulated by antigen-presenting cells.''; PubMed Europe PMC Scholia
  58. Truneh A, Reddy M, Ryan P, Lyn SD, Eichman C, Couez D, Hurle MR, Sekaly RP, Olive D, Sweet R.; ''Differential recognition by CD28 of its cognate counter receptors CD80 (B7.1) and B70 (B7.2): analysis by site directed mutagenesis.''; PubMed Europe PMC Scholia
  59. Pagès F, Ragueneau M, Klasen S, Battifora M, Couez D, Sweet R, Truneh A, Ward SG, Olive D.; ''Two distinct intracytoplasmic regions of the T-cell adhesion molecule CD28 participate in phosphatidylinositol 3-kinase association.''; PubMed Europe PMC Scholia
  60. Carter LL, Carreno BM.; ''Cytotoxic T-lymphocyte antigen-4 and programmed death-1 function as negative regulators of lymphocyte activation.''; PubMed Europe PMC Scholia
  61. Harada Y, Ohgai D, Watanabe R, Okano K, Koiwai O, Tanabe K, Toma H, Altman A, Abe R.; ''A single amino acid alteration in cytoplasmic domain determines IL-2 promoter activation by ligation of CD28 but not inducible costimulator (ICOS).''; PubMed Europe PMC Scholia
  62. Tybulewicz VL, Ardouin L, Prisco A, Reynolds LF.; ''Vav1: a key signal transducer downstream of the TCR.''; PubMed Europe PMC Scholia
  63. Manser E, Chong C, Zhao ZS, Leung T, Michael G, Hall C, Lim L.; ''Molecular cloning of a new member of the p21-Cdc42/Rac-activated kinase (PAK) family.''; PubMed Europe PMC Scholia
  64. Keir ME, Butte MJ, Freeman GJ, Sharpe AH.; ''PD-1 and its ligands in tolerance and immunity.''; PubMed Europe PMC Scholia
  65. Pearce LR, Huang X, Boudeau J, Pawłowski R, Wullschleger S, Deak M, Ibrahim AF, Gourlay R, Magnuson MA, Alessi DR.; ''Identification of Protor as a novel Rictor-binding component of mTOR complex-2.''; PubMed Europe PMC Scholia
  66. Okkenhaug K, Rottapel R.; ''Grb2 forms an inducible protein complex with CD28 through a Src homology 3 domain-proline interaction.''; PubMed Europe PMC Scholia

History

View all...
CompareRevisionActionTimeUserComment
115025view16:56, 25 January 2021ReactomeTeamReactome version 75
113470view11:54, 2 November 2020ReactomeTeamReactome version 74
112668view16:05, 9 October 2020ReactomeTeamReactome version 73
101585view11:45, 1 November 2018ReactomeTeamreactome version 66
101121view21:29, 31 October 2018ReactomeTeamreactome version 65
100649view20:03, 31 October 2018ReactomeTeamreactome version 64
100199view16:47, 31 October 2018ReactomeTeamreactome version 63
99750view15:14, 31 October 2018ReactomeTeamreactome version 62 (2nd attempt)
99314view12:46, 31 October 2018ReactomeTeamreactome version 62
93892view13:43, 16 August 2017ReactomeTeamreactome version 61
93463view11:24, 9 August 2017ReactomeTeamreactome version 61
87163view19:18, 18 July 2016MkutmonOntology Term : 'adaptive immune response pathway' added !
86558view09:20, 11 July 2016ReactomeTeamreactome version 56
83406view11:08, 18 November 2015ReactomeTeamVersion54
81606view13:08, 21 August 2015ReactomeTeamVersion53
77064view08:36, 17 July 2014ReactomeTeamFixed remaining interactions
76769view12:13, 16 July 2014ReactomeTeamFixed remaining interactions
76092view10:15, 11 June 2014ReactomeTeamRe-fixing comment source
75803view11:34, 10 June 2014ReactomeTeamReactome 48 Update
75154view14:10, 8 May 2014AnweshaFixing comment source for displaying WikiPathways description
74801view08:53, 30 April 2014ReactomeTeamReactome46
42022view21:51, 4 March 2011MaintBotAutomatic update
39825view05:51, 21 January 2011MaintBotNew pathway

External references

DataNodes

View all...
NameTypeDatabase referenceComment
ADP Metabolite16761 (ChEBI)
ATP Metabolite15422 (ChEBI)
Activated Rac-1 and

Cdc42

ComplexREACT_20094 (Reactome)
Akt:pCot ComplexREACT_19785 (Reactome)
Akt:pCot:pNIK ComplexREACT_19496 (Reactome)
Antigen-bearing MHC

Class II: TCR with dephosphorylated CD3 zeta chain:CD4

ComplexREACT_19788 (Reactome)
Antigen-bearing MHC

Class II: TCR with phosphorylated ITAMs:CD4

ComplexREACT_12725 (Reactome)
B- and T-lymphocyte

attenuator precursor

ProteinQ7Z6A9 (UniProt)
B7-1 homodimer/

B7-2

ComplexREACT_20199 (Reactome)
BTLA-HVEM

complex

ComplexREACT_20471 (Reactome)
C-terminal

modulator protein

ProteinQ5T1C6 (UniProt)
CD28 bound to B7

ligands

ComplexREACT_19594 (Reactome)
CD28 homodimer ComplexREACT_19916 (Reactome)
CD28:B7-1 ComplexREACT_19811 (Reactome)
CD28:B7-2 ComplexREACT_20140 (Reactome)
CD28:Gads ComplexREACT_20416 (Reactome)
CD28:Grb2 ComplexREACT_20227 (Reactome)
CD28:PI3K ComplexREACT_19529 (Reactome)
CD80 (B7-1)

homodimer

ComplexREACT_19742 (Reactome)
CD86 monomer ProteinP42081 (UniProt)
CDC42-GDP ComplexREACT_20401 (Reactome)
CDC42-GTP ComplexREACT_12889 (Reactome)
CTLA-4 homodimer ComplexREACT_19654 (Reactome)
CTLA-4:PP2A ComplexREACT_19731 (Reactome)
FYN ProteinP06241 (UniProt)
GDP Metabolite17552 (ChEBI)
GRB2 ProteinP62993-1 (UniProt)
GRB2-related

adapter protein 2

ProteinO75791 (UniProt)
GTP Metabolite15996 (ChEBI)
Grb2:pBTLA:HVEM ComplexREACT_20022 (Reactome)
HVEM ProteinQ92956 (UniProt)
ICOS ProteinQ9Y6W8-1 (UniProt)
ICOS:ICOSL ComplexREACT_20114 (Reactome)
ICOS:PI3K ComplexREACT_19686 (Reactome)
ICOSL ProteinO75144 (UniProt)
Lck/Csk ProteinREACT_20288 (Reactome)
Lck/Fyn ProteinREACT_20035 (Reactome)
Nik ProteinQ99558 (UniProt)
Orthophosphate Metabolite18367 (ChEBI)
PAK ProteinREACT_19640 (Reactome)
PAK bound to Rac1

and Cdc42

ComplexREACT_19943 (Reactome)
PAK homodimer ComplexREACT_19479 (Reactome)
PD-1 ProteinQ15116 (UniProt)
PD-1 ligands ProteinREACT_20259 (Reactome)
PD-1:PD-1 ligands ComplexREACT_20041 (Reactome)
PDK1:AKT ComplexREACT_20806 (Reactome)
PDK1:AKT:PIP3 ComplexREACT_13226 (Reactome)
PI3K alpha ComplexREACT_12697 (Reactome)
PIP3:PDK1:Phospho-

AKT

ComplexREACT_12841 (Reactome)
PIP3:PDK1:active

AKT

ComplexREACT_13230 (Reactome)
PP2A ComplexREACT_10628 (Reactome)
PP2A:CTLA4:B7-

1/B7-2

ComplexREACT_19452 (Reactome)
Phosphatidylinositol-

3,4,5-trisphosphate

Metabolite16618 (ChEBI)
Phosphatidylinositol-

4,5-bisphosphate

Metabolite18348 (ChEBI)
Phosphorylated

CTLA-4 bound to kinases

ComplexREACT_19872 (Reactome)
Phosphorylated ICOS ProteinQ9Y6W8-1 (UniProt)
Phosphorylated PD-1

bound to B7DC/B7H1

ComplexREACT_19810 (Reactome)
RAC1-GDP ComplexREACT_22018 (Reactome)
RAC1-GTP ComplexREACT_21594 (Reactome)
SHP-1/SHP-2 bound

to phospho PD-1

ComplexREACT_19972 (Reactome)
SHP-1/SHP-2:

pBTLA:HVEM

ComplexREACT_19540 (Reactome)
SHP-2/SHP-1 ProteinREACT_20250 (Reactome)
SHP2 ProteinQ06124 (UniProt)
Src family tyrosine

kinases

ProteinREACT_13328 (Reactome)
TORC2 complex ComplexREACT_13222 (Reactome)
TPL2 ProteinP41279 (UniProt)
Tribbles

homolog 3

ProteinQ96RU7 (UniProt)
VAV1 ProteinP15498 (UniProt)
Vav1 bound to PIP3

and Grb2:CD28

ComplexREACT_19524 (Reactome)
pBTLA-HVEM

complex

ComplexREACT_19709 (Reactome)
pCTLA-4:Src

kinases:SHP2

ComplexREACT_19498 (Reactome)
pVav1:PIP3:Grb2:

CD28

ComplexREACT_20129 (Reactome)
phospho CD28:B7-

1/B7-2

ComplexREACT_19582 (Reactome)
pyrophosphate Metabolite29888 (ChEBI)

Annotated Interactions

No annotated interactions

Personal tools