Eukaryotic translation initiation (Homo sapiens)

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1125261, 4-6, 12...1010184, 5, 7, 9, 15...23, 244-6, 19, 21224, 5, 20, 22314, 2223, 241, 24-6171, 2, 820eIF2GTP ternary complex 60S ribosomal complex eIF4A subunits complex eIF5BGTP 80SMet-tRNAimRNAeIF5BGTP eIF2 subunit complex eIF4A subunits complex eIF4A subunits complex eIF4F eIF2GTP eIF2 subunit complex eIF2GTP 43S complex cytosoleIF3 subunits complex eIF2 subunit complex eIF2 subunit complex eIF4F 48S complex eIF2GTP eIF4F eIF2 subunit complex ternary complex 43S Ceruloplasmin mRNAeIF4FeIF4BeIF4HPABP eIF5BGDP 40S ribosomal complex 43S Ceruloplasmin mRNAeIF4FeIF4BeIF4HPABP eIF2 subunit complex ternary complex eIF2 subunit complex eIF2GTP eIF3 subunits complex ternary complex 43SmRNAeIF4FeIF4BeIF4H 80SMet-tRNAimRNA 60s ribosomal complex lacking L13a subunit eIF3 subunits complex 80S ribosome eIF3 subunits complex eIF4F 43S complex 43S complex eIF4F eIF2GTP 40S ribosomal complex eIF3 subunits complex 40S ribosomal complex ternary complex 40SeIF3eIF1A 40SMet-tRNAimRNA 43S complex eIF4F eIF2 subunit complex eIF2 subunit complex eIF4A subunits complex 60S ribosomal complex eIF5BGTP 40S ribosomal complex eIF2GDP 43S complex phospho-L13a associated wth the 3' UTR GAIT element of ceruloplasmin mRNA within the translation initiation complex 60S ribosomal complex eIF3 subunits complex eIF4FmRNP Ceruloplasmin mRNAeIF4FeIF4BeIF4H eIF2 subunit complex 40S ribosomal complex eIF4E4E-BP eIF4A subunits complex eIF4F eIF4F 40S ribosomal complex eIF4A subunits complex 40S ribosomal complex 40S ribosomal complex eIF2 subunit complex eIF2GTP eIF3 subunits complex mRNP eIF2B subunits complex mRNAeIF4FeIF4BeIF4H 60S ribosomal complex eIF2B subunits complex eIF4A subunits complex eIF2GTP eIF2 subunit complex eIF4A subunits complex 40S ribosomal complex 80S ribosome ternary complex 80S ribosome 40S ribosomal complex eIF4A subunits complex 40S ribosomal complex mRNP eIF2GDP eIF2B RPS2RPL4 43SmRNAeIF4FeIF4BeIF4HRPL22 RPS9 RPL18A EIF4G1 RPS14 RPS18 RPS18 RPLP2 EIF3B RPS25 RPL27RPS28 RPS19 RPS8EIF2S2RPL7 EIF3J EIF3G RPSA RPS15A RPS14 EIF3H RPS3A ternary complexRPL39 RPS12 RPS3 RPS5RPS15A EIF4BEIF2S1RPL7A RPS17 GTP EIF3A EIF4E RPS25 RPL38 RPLP1RPS24 Met-tRNAiRPSA RPL14 RPS12 RPS14 RPS5RPS19 PiRPS3A RPL18 RPS3A RPS26 RPS24 RPL13RPLP1EIF3A RPS27ARPS15A RPL24 28S rRNA Ceruloplasmin mRNA RPL6 RPS21 RPS7 RPS3A EIF4E 43S Ceruloplasmin mRNAeIF4FeIF4BeIF4HPABPRPS25 UBA52EIF3I RPS11 GDP RPL32 RPL32 RPL5 RPS13RPS15 RPS16 RPS27APABPC1RPS27 RPS27 RPS13PiRPS26 EIF3I RPL35A RPL26L1RPS27ARPS29 RPS4X RPS27ARPLP2 RPS23 RPS4Y1RPL5 RPS19 RPS16 40SeIF3eIF1AEIF3H ATPRPL35A FAU 28S rRNA RPL26 18S rRNA EIF4H RPL14 RPS20 5.8S rRNA RPL26L1FAU EIF3K 40SMet-tRNAimRNAEIF4H RPS5RPL27A RPS5RPL37A EIF2B4 RPL17 EIF3D RPS26 RPL36A RPL26 RPS12 RPL24 EIF3K RPS27ARPL41 EIF3J RPS28 RPL10 RPS4X RPS27 RPL23 RPS19 RPS21 RPL36 mRNPRPL7 Ceruloplasmin mRNA RPS8RPS15 RPS4X RPL21 GTP RPS9 RPS29 RPL27A RPL13A RPL12 RPS27 RPS23 RPS10 RPS7 RPS29 RPS10 RPS12 RPS11 RPL36A RPS21 GTP RPL17 RPL37A RPL26L1RPS25 RPSA RPL7A RPL28 RPS12 RPL31 EIF4EBP1RPS21 RPS5RPS13RPL10A EIF1AXRPS17 RPS25 RPS28 FAU EIF4BRPS20 RPL28 RPS7 p-RPL13ARPL23A EIF4A1EIF4EBP1 EIF2B3 RPL13RPL23 RPL32 RPLP0 RPS3 RPLP1EIF3I RPS14 L13a kinaseRPS3 RPL23 5S rRNA RPL35A RPS16 RPS18 eIF2 subunit complexRPL14 eIF2GDPEIF4BRPS6 40S ribosomal complexeIF2B subunits complexRPS4Y1eIF4A subunits complexRPL13AEIF3K RPL37A RPL37A EIF2B2 EIF3D EIF2S3 RPS16 FAU RPS27 RPS11 RPS3A RPS4X RPL23 RPS4X EIF2S3 RPS4Y1RPS10 RPL30RPS11 RPS23 EIF3E RPL35 eIF4FmRNPRPL36 EIF3K RPS27ARPS11 EIF3C RPL35 RPS15A RPS9 GDPRPS18 RPS15A RPS11 EIF3F RPS9 RPS27 RPL9 RPL31 RPL37 RPS26 28S rRNA RPS27 eIF1EIF4A1RPL34 RPL19 RPS11 RPL6 RPL7A RPS3 RPS21 EIF4HRPS17 RPS12 RPL275S rRNA RPL3LRPSA RPS17 EIF2B5RPL7 EIF3D EIF2B1 EIF3D RPL13A EIF4A1RPS11 RPS16 GTP RPS14 RPL28 5S rRNA RPS9 RPL8 RPS20 EIF4G1 RPL10A EIF2S3 RPL39 RPL6 EIF4H EIF3I RPS26 RPL22 RPS7 RPS24 EIF2B5RPL10 RPS8RPS23 18S rRNA RPL14 RPS17 GDP RPS15A GTPRPL9 RPL7A RPL35 RPS27 EIF3B EIF1AXEIF4A2 RPS8RPS20 RPS23 EIF4G1FAU RPS17 RPS27 RPS27 RPS13RPL21 RPS9 GTP RPL28 eIF3 subunits complexRPS27AEIF2S1RPS15 RPS2RPL30RPL34 RPS16 RPL37 RPL23A RPS7 EIF4A2 eIF4E4E-BPEIF4A2 PiRPS19 RPS16 RPS28 RPS20 RPL17 RPS18 GTP RPS19 RPL36A EIF2S1RPL10A EIF2S2RPS3A EIF3E EIF3J FAU RPS28 RPL27RPS5RPL18A RPS2GTP EIF3G RPS19 RPL14 RPL37A RPS11 eIF2 subunit complexRPS23 RPL24 EIF2S3 RPS5RPS26 RPS4X eIF4FRPS4Y1RPS10 RPS18 RPL7A 60s ribosomal complex lacking L13a subunitRPS26 RPS21 RPL4 EIF4E RPS3 RPS24 RPS4X RPLP0 RPS25 RPL18 RPS6 RPS19 FAU EIF4G1 EIF2S3 RPL35A RPS10 RPS2EIF2S2FAU RPS4X EIF4BEIF2S3 RPLP0 RPL5 80S ribosomeRPL13EIF3A RPS27 RPS11 RNA-binding protein in RNP EIF4A1RPS12 EIF3B RPL29 RPL19 EIF1AXeIF2GTPRPS21 RPS4Y1RPL41 43S complex80SMet-tRNAimRNAeIF5BGTPRPS2EIF4H RPS25 EIF3A 48S complexUBA52EIF3F RPLP2 RPS12 UBA52RPL27A RPS7 EIF4A1RPS23 RPL26L1Ceruloplasmin mRNA EIF4H EIF3H RPS27ARPS5RPS3A EIF1AXRPS10 EIF4E EIF2S2RPL7 EIF3C EIF4A2 RPS7 RPS25 EIF3E RPLP1RPS15A RPL9 GDP EIF5RPL27RPS28 RPL18 EIF2B1 EIF3J RPL10 RPS15 EIF4G1 EIF1AXRPS8RPS9 EIF3C EIF2S3 EIF4A1ATPEIF3E RPLP2 RPS18 EIF3K RPS15 EIF3H RPS15 EIF1AXRPLP0 RPL8 EIF4A2 ADPRPS20 RPL11 RPS9 RPL305.8S rRNA EIF3J 18S rRNA RPL10 EIF3G EIF3B RPS9 RPL18A RPL23A EIF2B4 RPS12 EIF2S1RPS24 RPS85S rRNA EIF3C RPS19 RPL15EIF2S1Ceruloplasmin mRNAeIF4FeIF4BeIF4HRPS26 RPL21 RPL5 RPS7 GTP EIF4A2 18S rRNA EIF2S3 EIF3I EIF2S1RPS2RPS2RPS4Y1EIF2S3 RPL29 GTP 18S rRNA EIF1AXRPS21 RPL9 RPS3 RPS18 RPS10 RPL24 RPS24 RPS19 RPL15RPS26 RPS6 RPL5 5.8S rRNA RPS6 RPL31 18S rRNA RPL29 RPL22 RPL39 RPL34 RPS29 RPS9 RPL17 EIF3K EIF3A RPL18A RPS29 RPL38 RPL7 RPS25 EIF4A1EIF3G FAU 5.8S rRNA RPS3A RPS15 EIF4BRPS3A EIF4E RPL36 RPL10A RPSA RPS13EIF4A2 RPL8 28S rRNA EIF1AXRPSA RPS8RPL17 RPL1318S rRNA EIF3D RPS17 RPSA mRNAeIF4FeIF4BeIF4HEIF4A1RPLP1RPS6 RPS15 RPL11 RPL41 RPS16 RPL18A RPS13eIF2GDP eIF2BRPS17 RPL3LRPS7 RPS17 p-RPL13A EIF4E EIF3I EIF3H EIF3K RPL11 EIF4BRPS3 RPL34 RPS4Y1RPS8RPS24 RPS26 RPS5RPS13RPL27EIF2S1RPLP0 RPS4Y1RPL22 RPS28 18S rRNA EIF4A2 UBA52RPS10 EIF3G EIF4G1 RPL26 RPS23 RPS14 EIF2S3 RPL39 RPL21 RPL36A RPL27A RPL24 RPL4 EIF2S2EIF3F EIF2S1EIF2S2EIF2B3 EIF2S2EIF2S1EIF3F EIF3B RPS12 FAU EIF3F RPS2RPL32 RPS27ARPS24 EIF5B RPS21 EIF3A eIF1EIF3J RPL39 RPL19 RPS14 RPL18 RPL22 RPS4X RPS4X RPL21 RPL3 RPS13EIF5EIF2S2RPL26 RPS15A EIF4E RPL31 GTP EIF4A2 RPL35 RPS20 RPS20 PABPC1 RPS14 18S rRNA RPS21 EIF2S2RPS3 RPS29 EIF4BUBA52EIF4E RPS2EIF3C RPS24 RPS16 EIF4A1RPS24 RPL11 RPS6 EIF3B RPL26 RPL41 RPL30RPS6 EIF3B RPS4X RPL36A EIF2S2EIF2S2RPL28 RPL38 RPL3 EIF2B2 RPS16 RPS7 RPL4 RPS29 18S rRNA RPS29 EIF3F EIF5B EIF2S1GTPRPL30EIF2S3 RPL3 EIF4G1 RPS15A EIF1AXRPS18 RPL10A RPL3LRPL29 EIF3A RPS29 RPL4 EIF5RPL15RPL13A RPS15 RPS8RPSA RPS14 RPL23 RPL18 RPL23A RPL12 EIF1AXRPS13RPL9 RPL38 phospho-L13a associated wth the 3' UTR GAIT element of ceruloplasmin mRNA within the translation initiation complexRPS3A RPS17 RPS23 RPS2RPL36 eIF5BGDPRPS27ARPL35A RPL3 RPL15RPS20 RPS9 eIF2GTPRPS16 RPS10 RPS28 RPS20 RPS15A RPS28 RPL35 RPS15 RPS18 RPL37 RPS5RPS3 EIF4ERPL8 RPS4Y1RPS6 RPL11 28S rRNA EIF3H RPS13RPL41 RPL10 EIF2S2RPS3 RPL12 RPS15A RPS27ARPL29 18S rRNA RPL8 RPL19 RPS19 RPL34 RPL12 EIF3E RPL13eIF5BGTPEIF3D EIF3G RPL23A RPS10 RPS14 RPS6 EIF4G1 RPLP2 RPS5RPL12 RPL3LRPS17 RPS4Y1RPL26L1EIF2S1RPSA 80SMet-tRNAimRNARPL19 RPS10 RPS21 EIF3E RPS2RPL3 EIF2S1RPL27A RPL37 EIF3D EIF4E ADPRPS7 RPL6 RPSA RPS20 EIF3H RPS6 5.8S rRNA RPSA RPS12 EIF4G1 EIF3J RPS25 RPS28 RPS26 EIF5B RPL3LPiRPL13A EIF3E EIF2S3 EIF3I EIF3G RPL32 RPS18 RPL15EIF3C RPS8RPS3 RPS4Y1RPL6 EIF3C RPL31 RPS24 RPS29 RPS3A PABPC1 RPS6 RPS25 RPL36 RPL38 RPS13RPL37 FAU ATPRPS29 RPS8RPS28 60S ribosomal complexRPS11 RPS23 EIF3F EIF4H 5S rRNA RPS14 RPS23 RPS15 16, 2716, 2716, 2716, 2716, 2716, 2716, 2716, 2716, 2716, 27


Description

Initiation of translation in the majority of eukaryotic cellular mRNAs depends on the 5'-cap (m7GpppN) and involves ribosomal scanning of the 5' untranslated region (5'-UTR) for an initiating AUG start codon. Therefore, this mechanism is often called cap-dependent translation initiation. Proximity to the cap, as well as the nucleotides surrounding an AUG codon, influence the efficiency of the start site recognition during the scanning process. However, if the recognition site is poor enough, scanning ribosomal subunits will ignore and skip potential starting AUGs, a phenomenon called leaky scanning. Leaky scanning allows a single mRNA to encode several proteins that differ in their amino-termini. Merrick (2010) provides an overview of this process and hghlights several features of it that remain incompletely understood.

Several eukaryotic cell and viral mRNAs initiate translation by an alternative mechanism that involves internal initiation rather than ribosomal scanning. These mRNAs contain complex nucleotide sequences, called internal ribosomal entry sites, where ribosomes bind in a cap-independent manner and start translation at the closest downstream AUG codon. Original Pathway at Reactome: http://www.reactome.org/PathwayBrowser/#DB=gk_current&FOCUS_SPECIES_ID=48887&FOCUS_PATHWAY_ID=72613</div>

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Ontology Terms

 

Bibliography

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  1. Pause A, Belsham GJ, Gingras AC, Donzé O, Lin TA, Lawrence JC, Sonenberg N.; ''Insulin-dependent stimulation of protein synthesis by phosphorylation of a regulator of 5'-cap function.''; PubMed Europe PMC Scholia
  2. Sampath P, Mazumder B, Seshadri V, Fox PL.; ''Transcript-selective translational silencing by gamma interferon is directed by a novel structural element in the ceruloplasmin mRNA 3' untranslated region.''; PubMed Europe PMC Scholia
  3. Pestova TV, Borukhov SI, Hellen CU.; ''Eukaryotic ribosomes require initiation factors 1 and 1A to locate initiation codons.''; PubMed Europe PMC Scholia
  4. Mazumder B, Sampath P, Seshadri V, Maitra RK, DiCorleto PE, Fox PL.; ''Regulated release of L13a from the 60S ribosomal subunit as a mechanism of transcript-specific translational control.''; PubMed Europe PMC Scholia
  5. Grifo JA, Tahara SM, Morgan MA, Shatkin AJ, Merrick WC.; ''New initiation factor activity required for globin mRNA translation.''; PubMed Europe PMC Scholia
  6. Safer B, Adams SL, Anderson WF, Merrick WC.; ''Binding of MET-TRNAf and GTP to homogeneous initiation factor MP.''; PubMed Europe PMC Scholia
  7. Pestova TV, Shatsky IN, Hellen CU.; ''Functional dissection of eukaryotic initiation factor 4F: the 4A subunit and the central domain of the 4G subunit are sufficient to mediate internal entry of 43S preinitiation complexes.''; PubMed Europe PMC Scholia
  8. Merrick WC.; ''Eukaryotic protein synthesis: still a mystery.''; PubMed Europe PMC Scholia
  9. Kozak M.; ''Evaluation of the "scanning model" for initiation of protein synthesis in eucaryotes.''; PubMed Europe PMC Scholia
  10. Chakrabarti A, Maitra U.; ''Function of eukaryotic initiation factor 5 in the formation of an 80 S ribosomal polypeptide chain initiation complex.''; PubMed Europe PMC Scholia
  11. Trachsel H, Erni B, Schreier MH, Staehelin T.; ''Initiation of mammalian protein synthesis. II. The assembly of the initiation complex with purified initiation factors.''; PubMed Europe PMC Scholia
  12. Rowlands AG, Panniers R, Henshaw EC.; ''The catalytic mechanism of guanine nucleotide exchange factor action and competitive inhibition by phosphorylated eukaryotic initiation factor 2.''; PubMed Europe PMC Scholia
  13. Iost I, Dreyfus M, Linder P.; ''Ded1p, a DEAD-box protein required for translation initiation in Saccharomyces cerevisiae, is an RNA helicase.''; PubMed Europe PMC Scholia
  14. Benne R, Hershey JW.; ''The mechanism of action of protein synthesis initiation factors from rabbit reticulocytes.''; PubMed Europe PMC Scholia
  15. Schreier MH, Erni B, Staehelin T.; ''Initiation of mammalian protein synthesis. I. Purification and characterization of seven initiation factors.''; PubMed Europe PMC Scholia
  16. Sonenberg N, Rupprecht KM, Hecht SM, Shatkin AJ.; ''Eukaryotic mRNA cap binding protein: purification by affinity chromatography on sepharose-coupled m7GDP.''; PubMed Europe PMC Scholia
  17. Dever TE, Wei CL, Benkowski LA, Browning K, Merrick WC, Hershey JW.; ''Determination of the amino acid sequence of rabbit, human, and wheat germ protein synthesis factor eIF-4C by cloning and chemical sequencing.''; PubMed Europe PMC Scholia
  18. Merrick WC, Kemper WM, Anderson WF.; ''Purification and characterization of homogeneous initiation factor M2A from rabbit reticulocytes.''; PubMed Europe PMC Scholia
  19. Asano K, Clayton J, Shalev A, Hinnebusch AG.; ''A multifactor complex of eukaryotic initiation factors, eIF1, eIF2, eIF3, eIF5, and initiator tRNA(Met) is an important translation initiation intermediate in vivo.''; PubMed Europe PMC Scholia
  20. Peterson DT, Merrick WC, Safer B.; ''Binding and release of radiolabeled eukaryotic initiation factors 2 and 3 during 80 S initiation complex formation.''; PubMed Europe PMC Scholia
  21. Goumans H, Thomas A, Verhoeven A, Voorma HO, Benne R.; ''The role of eIF-4C in protein synthesis initiation complex formation.''; PubMed Europe PMC Scholia
  22. Imataka H, Gradi A, Sonenberg N.; ''A newly identified N-terminal amino acid sequence of human eIF4G binds poly(A)-binding protein and functions in poly(A)-dependent translation.''; PubMed Europe PMC Scholia
  23. Chuang RY, Weaver PL, Liu Z, Chang TH.; ''Requirement of the DEAD-Box protein ded1p for messenger RNA translation.''; PubMed Europe PMC Scholia
  24. Lahn BT, Page DC.; ''Functional coherence of the human Y chromosome.''; PubMed Europe PMC Scholia
  25. Yoder-Hill J, Pause A, Sonenberg N, Merrick WC.; ''The p46 subunit of eukaryotic initiation factor (eIF)-4F exchanges with eIF-4A.''; PubMed Europe PMC Scholia
  26. Pestova TV, Lomakin IB, Lee JH, Choi SK, Dever TE, Hellen CU.; ''The joining of ribosomal subunits in eukaryotes requires eIF5B.''; PubMed Europe PMC Scholia
  27. Damoc E, Fraser CS, Zhou M, Videler H, Mayeur GL, Hershey JW, Doudna JA, Robinson CV, Leary JA.; ''Structural characterization of the human eukaryotic initiation factor 3 protein complex by mass spectrometry.''; PubMed Europe PMC Scholia
  28. Majumdar R, Bandyopadhyay A, Maitra U.; ''Mammalian translation initiation factor eIF1 functions with eIF1A and eIF3 in the formation of a stable 40 S preinitiation complex.''; PubMed Europe PMC Scholia
  29. Dholakia JN, Wahba AJ.; ''Mechanism of the nucleotide exchange reaction in eukaryotic polypeptide chain initiation. Characterization of the guanine nucleotide exchange factor as a GTP-binding protein.''; PubMed Europe PMC Scholia

History

View all...
CompareRevisionActionTimeUserComment
128373view17:49, 3 February 2024Ash iyerFixing error (check)
128372view17:45, 3 February 2024Ash iyeridentifier added
128371view17:43, 3 February 2024Ash iyereif1 identifier added.
128323view00:28, 1 February 2024EweitzOntology Term : 'translation pathway' added !
117720view12:33, 22 May 2021EweitzModified title
114979view16:50, 25 January 2021ReactomeTeamReactome version 75
113423view11:49, 2 November 2020ReactomeTeamReactome version 74
112625view16:00, 9 October 2020ReactomeTeamReactome version 73
101541view11:40, 1 November 2018ReactomeTeamreactome version 66
101076view21:23, 31 October 2018ReactomeTeamreactome version 65
100606view19:57, 31 October 2018ReactomeTeamreactome version 64
100157view16:42, 31 October 2018ReactomeTeamreactome version 63
99707view15:11, 31 October 2018ReactomeTeamreactome version 62 (2nd attempt)
99288view12:46, 31 October 2018ReactomeTeamreactome version 62
93969view13:48, 16 August 2017ReactomeTeamreactome version 61
93568view11:27, 9 August 2017ReactomeTeamreactome version 61
86670view09:23, 11 July 2016ReactomeTeamreactome version 56
83337view10:49, 18 November 2015ReactomeTeamVersion54
76969view08:25, 17 July 2014ReactomeTeamFixed remaining interactions
76674view12:04, 16 July 2014ReactomeTeamFixed remaining interactions
76136view13:23, 11 June 2014AnweshaRe-fixing comment source
75707view11:05, 10 June 2014ReactomeTeamReactome 48 Update
75062view13:57, 8 May 2014AnweshaFixing comment source for displaying WikiPathways description
74706view08:46, 30 April 2014ReactomeTeamReactome46
45250view18:36, 7 October 2011AlexanderPicoOntology Term : 'translation initiation pathway' added !
42035view21:51, 4 March 2011MaintBotAutomatic update
39838view05:52, 21 January 2011MaintBotNew pathway

External references

DataNodes

View all...
NameTypeDatabase referenceComment
18S rRNA ProteinX03205 (EMBL)
28S rRNA ProteinM11167 (EMBL)
40S

Met-tRNAi

mRNA
ComplexREACT_3073 (Reactome)
40S

eIF3

eIF1A
ComplexREACT_2456 (Reactome)
40S ribosomal complexComplexREACT_5094 (Reactome)
43S
Ceruloplasmin mRNA

eIF4F eIF4B eIF4H

PABP
ComplexREACT_3267 (Reactome)
43S

mRNA eIF4F eIF4B

eIF4H
ComplexREACT_4439 (Reactome)
43S complexComplexREACT_3677 (Reactome)
48S complexComplexREACT_5152 (Reactome)
5.8S rRNA ProteinJ01866 (EMBL)
5S rRNA ProteinV00589 (EMBL)
60S ribosomal complexComplexREACT_2629 (Reactome)
60s ribosomal complex lacking L13a subunitComplexREACT_4690 (Reactome)
80S

Met-tRNAi mRNA eIF5B

GTP
ComplexREACT_2486 (Reactome)
80S

Met-tRNAi

mRNA
ComplexREACT_4537 (Reactome)
80S ribosomeComplexREACT_4330 (Reactome)
ADPMetaboliteCHEBI:16761 (ChEBI)
ATPMetaboliteCHEBI:15422 (ChEBI)
Ceruloplasmin mRNA

eIF4F eIF4B

eIF4H
ComplexREACT_2288 (Reactome)
Ceruloplasmin mRNA ProteinM13699 (EMBL)
EIF1AXProteinP47813 (Uniprot-TrEMBL)
EIF2B1 ProteinQ14232 (Uniprot-TrEMBL)
EIF2B2 ProteinP49770 (Uniprot-TrEMBL)
EIF2B3 ProteinQ9NR50 (Uniprot-TrEMBL)
EIF2B4 ProteinQ9UI10 (Uniprot-TrEMBL)
EIF2B5ProteinQ13144 (Uniprot-TrEMBL)
EIF2S1ProteinP05198 (Uniprot-TrEMBL)
EIF2S2ProteinP20042 (Uniprot-TrEMBL)
EIF2S3 ProteinP41091 (Uniprot-TrEMBL)
EIF3A ProteinQ14152 (Uniprot-TrEMBL)
EIF3B ProteinP55884 (Uniprot-TrEMBL)
EIF3C ProteinQ99613 (Uniprot-TrEMBL)
EIF3D ProteinO15371 (Uniprot-TrEMBL)
EIF3E ProteinP60228 (Uniprot-TrEMBL)
EIF3F ProteinO00303 (Uniprot-TrEMBL)
EIF3G ProteinO75821 (Uniprot-TrEMBL)
EIF3H ProteinO15372 (Uniprot-TrEMBL)
EIF3I ProteinQ13347 (Uniprot-TrEMBL)
EIF3J ProteinO75822 (Uniprot-TrEMBL)
EIF3K ProteinQ9UBQ5 (Uniprot-TrEMBL)
EIF4A1ProteinP60842 (Uniprot-TrEMBL)
EIF4A2 ProteinQ14240 (Uniprot-TrEMBL)
EIF4BProteinP23588 (Uniprot-TrEMBL)
EIF4E ProteinP06730 (Uniprot-TrEMBL)
EIF4EBP1 ProteinQ13541 (Uniprot-TrEMBL)
EIF4EBP1ProteinQ13541 (Uniprot-TrEMBL)
EIF4EProteinP06730 (Uniprot-TrEMBL)
EIF4G1 ProteinQ04637 (Uniprot-TrEMBL)
EIF4G1ProteinQ04637 (Uniprot-TrEMBL)
EIF4H ProteinQ15056 (Uniprot-TrEMBL)
EIF4HProteinQ15056 (Uniprot-TrEMBL)
EIF5B ProteinO60841 (Uniprot-TrEMBL)
EIF5ProteinP55010 (Uniprot-TrEMBL)
FAU ProteinP62861 (Uniprot-TrEMBL)
GDP MetaboliteCHEBI:17552 (ChEBI)
GDPMetaboliteCHEBI:17552 (ChEBI)
GTP MetaboliteCHEBI:15996 (ChEBI)
GTPMetaboliteCHEBI:15996 (ChEBI)
L13a kinaseREACT_6440 (Reactome)
Met-tRNAiREACT_4829 (Reactome)
PABPC1 ProteinP11940 (Uniprot-TrEMBL)
PABPC1ProteinP11940 (Uniprot-TrEMBL)
PiMetaboliteCHEBI:18367 (ChEBI)
RNA-binding protein in RNP REACT_3670 (Reactome)
RPL10 ProteinP27635 (Uniprot-TrEMBL)
RPL10A ProteinP62906 (Uniprot-TrEMBL)
RPL11 ProteinP62913 (Uniprot-TrEMBL)
RPL12 ProteinP30050 (Uniprot-TrEMBL)
RPL13A ProteinP40429 (Uniprot-TrEMBL)
RPL13AProteinP40429 (Uniprot-TrEMBL)
RPL13ProteinP26373 (Uniprot-TrEMBL)
RPL14 ProteinP50914 (Uniprot-TrEMBL)
RPL15ProteinP61313 (Uniprot-TrEMBL)
RPL17 ProteinP18621 (Uniprot-TrEMBL)
RPL18 ProteinQ07020 (Uniprot-TrEMBL)
RPL18A ProteinQ02543 (Uniprot-TrEMBL)
RPL19 ProteinP84098 (Uniprot-TrEMBL)
RPL21 ProteinP46778 (Uniprot-TrEMBL)
RPL22 ProteinP35268 (Uniprot-TrEMBL)
RPL23 ProteinP62829 (Uniprot-TrEMBL)
RPL23A ProteinP62750 (Uniprot-TrEMBL)
RPL24 ProteinP83731 (Uniprot-TrEMBL)
RPL26 ProteinP61254 (Uniprot-TrEMBL)
RPL26L1ProteinQ9UNX3 (Uniprot-TrEMBL)
RPL27A ProteinP46776 (Uniprot-TrEMBL)
RPL27ProteinP61353 (Uniprot-TrEMBL)
RPL28 ProteinP46779 (Uniprot-TrEMBL)
RPL29 ProteinP47914 (Uniprot-TrEMBL)
RPL3 ProteinP39023 (Uniprot-TrEMBL)
RPL30ProteinP62888 (Uniprot-TrEMBL)
RPL31 ProteinP62899 (Uniprot-TrEMBL)
RPL32 ProteinP62910 (Uniprot-TrEMBL)
RPL34 ProteinP49207 (Uniprot-TrEMBL)
RPL35 ProteinP42766 (Uniprot-TrEMBL)
RPL35A ProteinP18077 (Uniprot-TrEMBL)
RPL36 ProteinQ9Y3U8 (Uniprot-TrEMBL)
RPL36A ProteinP83881 (Uniprot-TrEMBL)
RPL37 ProteinP61927 (Uniprot-TrEMBL)
RPL37A ProteinP61513 (Uniprot-TrEMBL)
RPL38 ProteinP63173 (Uniprot-TrEMBL)
RPL39 ProteinP62891 (Uniprot-TrEMBL)
RPL3LProteinQ92901 (Uniprot-TrEMBL)
RPL4 ProteinP36578 (Uniprot-TrEMBL)
RPL41 ProteinP62945 (Uniprot-TrEMBL)
RPL5 ProteinP46777 (Uniprot-TrEMBL)
RPL6 ProteinQ02878 (Uniprot-TrEMBL)
RPL7 ProteinP18124 (Uniprot-TrEMBL)
RPL7A ProteinP62424 (Uniprot-TrEMBL)
RPL8 ProteinP62917 (Uniprot-TrEMBL)
RPL9 ProteinP32969 (Uniprot-TrEMBL)
RPLP0 ProteinP05388 (Uniprot-TrEMBL)
RPLP1ProteinP05386 (Uniprot-TrEMBL)
RPLP2 ProteinP05387 (Uniprot-TrEMBL)
RPS10 ProteinP46783 (Uniprot-TrEMBL)
RPS11 ProteinP62280 (Uniprot-TrEMBL)
RPS12 ProteinP25398 (Uniprot-TrEMBL)
RPS13ProteinP62277 (Uniprot-TrEMBL)
RPS14 ProteinP62263 (Uniprot-TrEMBL)
RPS15 ProteinP62841 (Uniprot-TrEMBL)
RPS15A ProteinP62244 (Uniprot-TrEMBL)
RPS16 ProteinP62249 (Uniprot-TrEMBL)
RPS17 ProteinP08708 (Uniprot-TrEMBL)
RPS18 ProteinP62269 (Uniprot-TrEMBL)
RPS19 ProteinP39019 (Uniprot-TrEMBL)
RPS20 ProteinP60866 (Uniprot-TrEMBL)
RPS21 ProteinP63220 (Uniprot-TrEMBL)
RPS23 ProteinP62266 (Uniprot-TrEMBL)
RPS24 ProteinP62847 (Uniprot-TrEMBL)
RPS25 ProteinP62851 (Uniprot-TrEMBL)
RPS26 ProteinP62854 (Uniprot-TrEMBL)
RPS27 ProteinP42677 (Uniprot-TrEMBL)
RPS27AProteinP62979 (Uniprot-TrEMBL)
RPS28 ProteinP62857 (Uniprot-TrEMBL)
RPS29 ProteinP62273 (Uniprot-TrEMBL)
RPS2ProteinP15880 (Uniprot-TrEMBL)
RPS3 ProteinP23396 (Uniprot-TrEMBL)
RPS3A ProteinP61247 (Uniprot-TrEMBL)
RPS4X ProteinP62701 (Uniprot-TrEMBL)
RPS4Y1ProteinP22090 (Uniprot-TrEMBL)
RPS5ProteinP46782 (Uniprot-TrEMBL)
RPS6 ProteinP62753 (Uniprot-TrEMBL)
RPS7 ProteinP62081 (Uniprot-TrEMBL)
RPS8ProteinP62241 (Uniprot-TrEMBL)
RPS9 ProteinP46781 (Uniprot-TrEMBL)
RPSA ProteinP08865 (Uniprot-TrEMBL)
UBA52ProteinP62987 (Uniprot-TrEMBL)
eIF1REACT_3030 (Reactome)
eIF2

GDP

eIF2B
ComplexREACT_3553 (Reactome)
eIF2 GDPComplexREACT_2996 (Reactome)
eIF2 GTPComplexREACT_3909 (Reactome)
eIF2 subunit complexComplexREACT_5135 (Reactome)
eIF2B subunits complexComplexREACT_3897 (Reactome)
eIF3 subunits complexComplexREACT_4891 (Reactome)
eIF4A subunits complexComplexREACT_5786 (Reactome)
eIF4E 4E-BPComplexREACT_3978 (Reactome)
eIF4F mRNPComplexREACT_4731 (Reactome)
eIF4FComplexREACT_4441 (Reactome)
eIF5B GDPComplexREACT_4697 (Reactome)
eIF5B GTPComplexREACT_3457 (Reactome)
mRNA

eIF4F eIF4B

eIF4H
ComplexREACT_2596 (Reactome)
mRNPComplexREACT_3493 (Reactome)
p-RPL13A ProteinP40429 (Uniprot-TrEMBL)
p-RPL13AProteinP40429 (Uniprot-TrEMBL)
phospho-L13a associated wth the 3' UTR GAIT element of ceruloplasmin mRNA within the translation initiation complexComplexREACT_5151 (Reactome)
ternary complexComplexREACT_4168 (Reactome)

Annotated Interactions

View all...
SourceTargetTypeDatabase referenceComment
40S

Met-tRNAi

mRNA
ArrowREACT_1060 (Reactome)
40S

Met-tRNAi

mRNA
REACT_198 (Reactome)
40S

eIF3

eIF1A
REACT_1354 (Reactome)
40S ribosomal complexArrowREACT_928 (Reactome)
40S ribosomal complexREACT_608 (Reactome)
43S
Ceruloplasmin mRNA

eIF4F eIF4B eIF4H

PABP
ArrowREACT_1515 (Reactome)
43S
Ceruloplasmin mRNA

eIF4F eIF4B eIF4H

PABP
REACT_1595 (Reactome)
43S

mRNA eIF4F eIF4B

eIF4H
ArrowREACT_1904 (Reactome)
43S

mRNA eIF4F eIF4B

eIF4H
REACT_1516 (Reactome)
43S complexREACT_1515 (Reactome)
43S complexREACT_1904 (Reactome)
48S complexArrowREACT_1516 (Reactome)
48S complexArrowREACT_656 (Reactome)
48S complexREACT_1060 (Reactome)
48S complexREACT_656 (Reactome)
60S ribosomal complexArrowREACT_928 (Reactome)
60S ribosomal complexREACT_198 (Reactome)
60s ribosomal complex lacking L13a subunitArrowREACT_940 (Reactome)
80S

Met-tRNAi

mRNA
ArrowREACT_3 (Reactome)
80S ribosomeREACT_928 (Reactome)
ADPArrowREACT_1516 (Reactome)
ADPArrowREACT_1521 (Reactome)
ATPArrowREACT_1516 (Reactome)
ATPREACT_1516 (Reactome)
ATPREACT_1521 (Reactome)
Ceruloplasmin mRNA

eIF4F eIF4B

eIF4H
REACT_1515 (Reactome)
EIF1AXArrowREACT_1060 (Reactome)
EIF1AXArrowREACT_1515 (Reactome)
EIF1AXArrowREACT_1904 (Reactome)
EIF1AXArrowREACT_656 (Reactome)
EIF1AXArrowREACT_928 (Reactome)
EIF1AXREACT_1515 (Reactome)
EIF1AXREACT_1904 (Reactome)
EIF1AXREACT_608 (Reactome)
EIF1AXREACT_656 (Reactome)
EIF1AXREACT_928 (Reactome)
EIF4BArrowREACT_1060 (Reactome)
EIF4BREACT_1521 (Reactome)
EIF4Bmim-catalysisREACT_1521 (Reactome)
EIF4EArrowREACT_1060 (Reactome)
EIF4EArrowREACT_237 (Reactome)
EIF4EBP1ArrowREACT_237 (Reactome)
EIF4EREACT_441 (Reactome)
EIF4G1ArrowREACT_1060 (Reactome)
EIF4G1REACT_441 (Reactome)
EIF4HArrowREACT_1060 (Reactome)
EIF4HREACT_1521 (Reactome)
EIF4Hmim-catalysisREACT_1521 (Reactome)
EIF5ArrowREACT_1060 (Reactome)
EIF5ArrowREACT_656 (Reactome)
EIF5REACT_1060 (Reactome)
EIF5REACT_656 (Reactome)
GDPArrowREACT_1401 (Reactome)
GTPArrowREACT_1664 (Reactome)
GTPREACT_1401 (Reactome)
GTPREACT_77 (Reactome)
L13a kinasemim-catalysisREACT_1825 (Reactome)
Met-tRNAiREACT_1664 (Reactome)
PABPC1REACT_1515 (Reactome)
PiArrowREACT_1060 (Reactome)
PiArrowREACT_1516 (Reactome)
PiArrowREACT_1521 (Reactome)
PiArrowREACT_3 (Reactome)
REACT_1060 (Reactome) Once the Met-tRNAi has recognized the AUG, eIF2-bound GTP is hydrolyzed. The reaction is catalyzed by eIF5 (or eIF5B) and is thought to cause dissociation of all other initiation factors and allow joining of the large 60S ribosomal subunit. Release of the initiation factors from 40S leaves the Met-tRNAi in the ribosomal P-site base-paired to the start codon on the mRNA.
REACT_1354 (Reactome) The ternary complex (Met-tRNAi:eIF2:GTP) binds to the complex formed by the 40S subunit, eIF3 and eIF1A, to form the 43S complex. eIF1A promotes binding of the ternary complex to the 40S subunit within 43S. The initiator methionyl-tRNA from the ternary complex is positioned at the ribosomal P site.
REACT_1401 (Reactome) eIF2B is a guanine nucleotide releasing factor that is required to cause GDP release so that a new GTP molecule can bind and activate eIF2, so that it can be reused.
REACT_1515 (Reactome) The precise order of events leading to the circularization of poly (A) mRNA during translation initiation is unknown. Here the association of PABP with the poly (A) mRNA and the association of PABP with eIF4F are represented as occuring simultaneously after formation of the initiation complex. However, it is also possible that these interactions occur during the formation of the translation initiation complex. The binding of eIF4F to the cap and binding of PABP to the poly (A) tail, for example, may occur at the same time. In fact, the eIF4G-PABP interaction helps eIF4F to bind tighter to the cap (Borman et al. 2000.) In addition, eIF4B and eIF4H bind more transiently to the mRNA and may not be part of an initial complex in which PABP has not yet touched eIF4G.
REACT_1516 (Reactome) The mRNA-bound ribosomal complex moves along the 5'-untranslated region (5'-UTR) of the mRNA from its initial site to the initiation codon to form a 48S complex, in which the initiation codon (AUG) is base paired to the anticodon of the Met-tRNAi. It is not known whether eIF4A (or another ATPase, such as DED1) facilitates scanning by melting mRNA secondary structures or by actively propelling the ribosome.
REACT_1521 (Reactome) The DEAD-box RNA helicase eIF4A, together with the RNA-binding proteins eIF4B or eIF4H, is thought to unwind RNA secondary structures near the 5'-end of the mRNA and in the presence of ATP.
REACT_1595 (Reactome) Although the mechanism through which L13a prevents translation initiation has not been determined, Mazumder et al. (2003) have described four alternatives. L13a could (1) inhibit the function of eIF4F, (2) block the recruitment of the 43S preinitiation complex, (3) prevent scanning of the 43S complex to the initiation codon, or 4) interfere with joining of the 60S ribosomal subunit.
REACT_1664 (Reactome) The ternary complex forms upon binding of the initiator methionyl-tRNA to the active eIF2:GTP complex.
REACT_175 (Reactome) Inactive eIF2:GDP binds eIF2B to form an eIF2:GDP:eIF2B intermediate.
REACT_1825 (Reactome) The L13a subunit of the 60s ribosome is phosphorylated about 16 hours after INF gamma induction by an unknown kinase. At this time, L13a is also released from the 60s subunit (Mazumder et al.,2003). It is unclear, however, whether phosphorylation occurs before or after the release of L13a. Here, phosphorylation is shown as occurring after release.
REACT_1904 (Reactome) The translation initiation complex forms when the 43S complex binds the mRNA that is associated with eIF4F, eIF4B and eIF4H. eIF4G in the eIF4F complex can directly contact eIF3 in the 43S complex. eIF1A is necessary for the formation of this complex.
REACT_198 (Reactome) Joining of the 60S subunit to form the 80S ribosome is catalyzed by the presence of GTP-bound eIF5B.
REACT_237 (Reactome) eIF4E gets released from the inactive eIF4E:4EBP complex.
REACT_3 (Reactome) Once the 60S subunit joins the translation initiation complex, eIF5B hydrolyzes its GTP and is released from the now 80S monosome. The fully assembled 80s ribosome is now ready to start elongation of the polypeptide chain.
REACT_441 (Reactome) eIF4A interacts with eIF4G, and eIF4E interacts with the amino-terminal domain of eIF4G to form the cap-binding complex eIF4F.
REACT_608 (Reactome) eIF3 and eIF1A bind to the 40S ribosomal subunit.
REACT_656 (Reactome) The AUG initiation codon in the mRNA is recognized by base pairing with the anticodon of the Met-tRNAi. This reaction requires eIF1, eIF1A, eIF2 and eIF5.
REACT_77 (Reactome) Activation of eIF2 through direct binding of GTP.
REACT_918 (Reactome) The factor eIF4E within the eIF4F (cap-binding) complex directly binds the 5'-cap on eukaryotic mRNAs. Note that the mRNA is in complex with cytoplasmic proteins constituting an mRNP complex.
REACT_928 (Reactome) 80S monosomes dissociate into 40S and 60S ribosomal subunits. eIF1A promotes this dissociation.
REACT_940 (Reactome) The L13a subunit of the 60s ribosome is phosphorylated about 16 hours after INF gamma induction by an unknown kinase. At this time, L13a is also released from the 60s subunit (Mazumder et al.,2003). It is unclear, however, whether phosphorylation occurs before or after the release of L13a. Here, phosphorylation is shown as occurring after release.
RNA-binding protein in RNP ArrowREACT_1521 (Reactome)
RPL13AArrowREACT_940 (Reactome)
eIF1ArrowREACT_656 (Reactome)
eIF1REACT_1060 (Reactome)
eIF1REACT_656 (Reactome)
eIF1mim-catalysisREACT_1516 (Reactome)
eIF1mim-catalysisREACT_656 (Reactome)
eIF2

GDP

eIF2B
REACT_1401 (Reactome)
eIF2 GDPArrowREACT_1060 (Reactome)
eIF2 GDPREACT_175 (Reactome)
eIF2 GTPArrowREACT_1401 (Reactome)
eIF2 GTPREACT_1664 (Reactome)
eIF2 subunit complexArrowREACT_656 (Reactome)
eIF2 subunit complexREACT_656 (Reactome)
eIF2 subunit complexREACT_77 (Reactome)
eIF2B subunits complexArrowREACT_1401 (Reactome)
eIF2B subunits complexREACT_175 (Reactome)
eIF2B subunits complexmim-catalysisREACT_1401 (Reactome)
eIF3 subunits complexArrowREACT_1060 (Reactome)
eIF3 subunits complexREACT_608 (Reactome)
eIF4A subunits complexArrowREACT_1060 (Reactome)
eIF4A subunits complexArrowREACT_1521 (Reactome)
eIF4A subunits complexREACT_1521 (Reactome)
eIF4A subunits complexREACT_441 (Reactome)
eIF4A subunits complexmim-catalysisREACT_1521 (Reactome)
eIF4F mRNPREACT_1521 (Reactome)
eIF4FREACT_918 (Reactome)
eIF5B GDPArrowREACT_3 (Reactome)
eIF5B GTPREACT_198 (Reactome)
mRNA

eIF4F eIF4B

eIF4H
ArrowREACT_1521 (Reactome)
mRNA

eIF4F eIF4B

eIF4H
REACT_1904 (Reactome)
mRNPREACT_918 (Reactome)
p-RPL13AREACT_1595 (Reactome)
ternary complexREACT_1354 (Reactome)