DNA Damage Reversal (Homo sapiens)

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1112111nucleoplasmRepaired DNA after oxidative dealkylationMGMT containing S-methyl-L-cysteineMGMTAlkylated DNA with 1-methyladenine6-O-methyguanine containing damaged DNAAlkylated DNA with 1-ethyladenine2-OxoglutarateABH2 proteinABH3 proteinCO2FormaldehydeOxygenDNA with no 6-O-methylated guanineAlkylated DNA with 3-methylcytosineAcetaldehydeSuccinate


Description

DNA damage can be directly reversed by dealkylation.

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Ontology Terms

 

Bibliography

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  1. Trewick SC, Henshaw TF, Hausinger RP, Lindahl T, Sedgwick B.; ''Oxidative demethylation by Escherichia coli AlkB directly reverts DNA base damage.''; PubMed Europe PMC Scholia
  2. Feng C, Liu Y, Wang G, Deng Z, Zhang Q, Wu W, Tong Y, Cheng C, Chen Z.; ''Crystal structures of the human RNA demethylase Alkbh5 reveal basis for substrate recognition.''; PubMed Europe PMC Scholia
  3. Duncan T, Trewick SC, Koivisto P, Bates PA, Lindahl T, Sedgwick B.; ''Reversal of DNA alkylation damage by two human dioxygenases.''; PubMed Europe PMC Scholia
  4. Dango S, Mosammaparast N, Sowa ME, Xiong LJ, Wu F, Park K, Rubin M, Gygi S, Harper JW, Shi Y.; ''DNA unwinding by ASCC3 helicase is coupled to ALKBH3-dependent DNA alkylation repair and cancer cell proliferation.''; PubMed Europe PMC Scholia
  5. Sundheim O, Vågbø CB, Bjørås M, Sousa MM, Talstad V, Aas PA, Drabløs F, Krokan HE, Tainer JA, Slupphaug G.; ''Human ABH3 structure and key residues for oxidative demethylation to reverse DNA/RNA damage.''; PubMed Europe PMC Scholia
  6. Zhao X, Yang Y, Sun BF, Zhao YL, Yang YG.; ''FTO and obesity: mechanisms of association.''; PubMed Europe PMC Scholia
  7. Moore MH, Gulbis JM, Dodson EJ, Demple B, Moody PC.; ''Crystal structure of a suicidal DNA repair protein: the Ada O6-methylguanine-DNA methyltransferase from E. coli.''; PubMed Europe PMC Scholia
  8. Frayling TM, Timpson NJ, Weedon MN, Zeggini E, Freathy RM, Lindgren CM, Perry JR, Elliott KS, Lango H, Rayner NW, Shields B, Harries LW, Barrett JC, Ellard S, Groves CJ, Knight B, Patch AM, Ness AR, Ebrahim S, Lawlor DA, Ring SM, Ben-Shlomo Y, Jarvelin MR, Sovio U, Bennett AJ, Melzer D, Ferrucci L, Loos RJ, Barroso I, Wareham NJ, Karpe F, Owen KR, Cardon LR, Walker M, Hitman GA, Palmer CN, Doney AS, Morris AD, Smith GD, Hattersley AT, McCarthy MI.; ''A common variant in the FTO gene is associated with body mass index and predisposes to childhood and adult obesity.''; PubMed Europe PMC Scholia
  9. Dina C, Meyre D, Gallina S, Durand E, Körner A, Jacobson P, Carlsson LM, Kiess W, Vatin V, Lecoeur C, Delplanque J, Vaillant E, Pattou F, Ruiz J, Weill J, Levy-Marchal C, Horber F, Potoczna N, Hercberg S, Le Stunff C, Bougnères P, Kovacs P, Marre M, Balkau B, Cauchi S, Chèvre JC, Froguel P.; ''Variation in FTO contributes to childhood obesity and severe adult obesity.''; PubMed Europe PMC Scholia
  10. Chen B, Liu H, Sun X, Yang CG.; ''Mechanistic insight into the recognition of single-stranded and double-stranded DNA substrates by ABH2 and ABH3.''; PubMed Europe PMC Scholia
  11. Duguid EM, Rice PA, He C.; ''The structure of the human AGT protein bound to DNA and its implications for damage detection.''; PubMed Europe PMC Scholia
  12. Rasimas JJ, Dalessio PA, Ropson IJ, Pegg AE, Fried MG.; ''Active-site alkylation destabilizes human O6-alkylguanine DNA alkyltransferase.''; PubMed Europe PMC Scholia
  13. Tubbs JL, Pegg AE, Tainer JA.; ''DNA binding, nucleotide flipping, and the helix-turn-helix motif in base repair by O6-alkylguanine-DNA alkyltransferase and its implications for cancer chemotherapy.''; PubMed Europe PMC Scholia
  14. Lindahl T, Demple B, Robins P.; ''Suicide inactivation of the E. coli O6-methylguanine-DNA methyltransferase.''; PubMed Europe PMC Scholia
  15. Jia G, Fu Y, Zhao X, Dai Q, Zheng G, Yang Y, Yi C, Lindahl T, Pan T, Yang YG, He C.; ''N6-methyladenosine in nuclear RNA is a major substrate of the obesity-associated FTO.''; PubMed Europe PMC Scholia
  16. Han Z, Niu T, Chang J, Lei X, Zhao M, Wang Q, Cheng W, Wang J, Feng Y, Chai J.; ''Crystal structure of the FTO protein reveals basis for its substrate specificity.''; PubMed Europe PMC Scholia
  17. Xu C, Liu K, Tempel W, Demetriades M, Aik W, Schofield CJ, Min J.; ''Structures of human ALKBH5 demethylase reveal a unique binding mode for specific single-stranded N6-methyladenosine RNA demethylation.''; PubMed Europe PMC Scholia
  18. Aas PA, Otterlei M, Falnes PO, Vågbø CB, Skorpen F, Akbari M, Sundheim O, Bjørås M, Slupphaug G, Seeberg E, Krokan HE.; ''Human and bacterial oxidative demethylases repair alkylation damage in both RNA and DNA.''; PubMed Europe PMC Scholia
  19. Merkestein M, Sellayah D.; ''Role of FTO in Adipocyte Development and Function: Recent Insights.''; PubMed Europe PMC Scholia
  20. Zheng G, Dahl JA, Niu Y, Fedorcsak P, Huang CM, Li CJ, Vågbø CB, Shi Y, Wang WL, Song SH, Lu Z, Bosmans RP, Dai Q, Hao YJ, Yang X, Zhao WM, Tong WM, Wang XJ, Bogdan F, Furu K, Fu Y, Jia G, Zhao X, Liu J, Krokan HE, Klungland A, Yang YG, He C.; ''ALKBH5 is a mammalian RNA demethylase that impacts RNA metabolism and mouse fertility.''; PubMed Europe PMC Scholia
  21. Mitra S, Kaina B.; ''Regulation of repair of alkylation damage in mammalian genomes.''; PubMed Europe PMC Scholia
  22. Daniels DS, Mol CD, Arvai AS, Kanugula S, Pegg AE, Tainer JA.; ''Active and alkylated human AGT structures: a novel zinc site, inhibitor and extrahelical base binding.''; PubMed Europe PMC Scholia
  23. Vora RA, Pegg AE, Ealick SE.; ''A new model for how O6-methylguanine-DNA methyltransferase binds DNA.''; PubMed Europe PMC Scholia

History

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CompareRevisionActionTimeUserComment
114980view16:51, 25 January 2021ReactomeTeamReactome version 75
113424view11:50, 2 November 2020ReactomeTeamReactome version 74
112626view16:00, 9 October 2020ReactomeTeamReactome version 73
101542view11:40, 1 November 2018ReactomeTeamreactome version 66
101077view21:23, 31 October 2018ReactomeTeamreactome version 65
100607view19:57, 31 October 2018ReactomeTeamreactome version 64
100158view16:42, 31 October 2018ReactomeTeamreactome version 63
99708view15:11, 31 October 2018ReactomeTeamreactome version 62 (2nd attempt)
99289view12:46, 31 October 2018ReactomeTeamreactome version 62
93865view13:41, 16 August 2017ReactomeTeamreactome version 61
93430view11:23, 9 August 2017ReactomeTeamreactome version 61
86521view09:20, 11 July 2016ReactomeTeamreactome version 56
83251view10:31, 18 November 2015ReactomeTeamVersion54
81358view12:53, 21 August 2015ReactomeTeamVersion53
76827view08:05, 17 July 2014ReactomeTeamFixed remaining interactions
76531view11:50, 16 July 2014ReactomeTeamFixed remaining interactions
75864view09:51, 11 June 2014ReactomeTeamRe-fixing comment source
75564view10:36, 10 June 2014ReactomeTeamReactome 48 Update
74919view13:44, 8 May 2014AnweshaFixing comment source for displaying WikiPathways description
74563view08:36, 30 April 2014ReactomeTeamReactome46
69018view17:48, 8 July 2013MaintBotUpdated to 2013 gpml schema
45198view10:06, 7 October 2011MartijnVanIerselOntology Term : 'DNA repair pathway' added !
42027view21:51, 4 March 2011MaintBotAutomatic update
39830view05:51, 21 January 2011MaintBotNew pathway

External references

DataNodes

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NameTypeDatabase referenceComment
2-Oxoglutarate Metabolite30915 (ChEBI)
6-O-methyguanine

containing damaged DNA

UnknownREACT_4587 (Reactome)
ABH2 protein ProteinQ6NS38 (UniProt)
ABH3 protein ProteinQ96Q83 (UniProt)
Acetaldehyde Metabolite15343 (ChEBI)
Alkylated DNA with

1-ethyladenine

UnknownREACT_5603 (Reactome)
Alkylated DNA with

1-methyladenine

UnknownREACT_3986 (Reactome)
Alkylated DNA with

3-methylcytosine

UnknownREACT_4006 (Reactome)
CO2 Metabolite16526 (ChEBI)
DNA with no 6-O-

methylated guanine

UnknownREACT_4869 (Reactome)
Formaldehyde Metabolite16842 (ChEBI)
MGMT ProteinP16455 (UniProt)
MGMT containing S-

methyl-L-cysteine

ProteinP16455 (UniProt)
Oxygen Metabolite15379 (ChEBI)
Repaired DNA after

oxidative dealkylation

UnknownREACT_2610 (Reactome)
Succinate Metabolite15741 (ChEBI)

Annotated Interactions

No annotated interactions