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FB:th

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Contents

Species (Taxon ID) Drosophila melanogaster (fruit fly) (taxon:7227)
Gene Name(s) th ( synonyms: 0736/01, 1065/03, CG12284, D-IAP1, D-iap1, DIAP, DIAP I, DIAP-1, DIAP1, DIAPI, Diap, Diap-1, Diap-1/Th, Diap1, Drosophila IAP1, Drosophila Inhibitor of Apoptosis, Drosophila Inhibitor of Apoptosis 1, Drosophila Inhibitor of Apoptosis Protein, Drosophila Inhibitor of Apoptosis Protein 1, Drosophila Inhibitor of Apoptosis Protein-1, Drosophila Inhibitor of apoptosis protein 1, Drosophila inhibitor of apoptosis, Drosophila inhibitor of apoptosis 1, Drosophila inhibitor of apoptosis protein, Drosophila inhibitor of apoptosis protein 1, Drosophila inhibitor-of-apoptosis protein 1, Drosophila thread/inhibitor of apoptosis protein-1, E(rpr)3-1, IAP, IAP1, Iap1, Inhibitor of Apoptosis 1, Inhibitor of Apoptosis Protein 1, Inhibitor of apoptosis 1, Inhibitors of Apoptosis protein, S048915, Thread, dIAP, dIAP-1, dIAP1, dIap1, degradation of inhibitors of apoptosis, diap, diap 1, diap-1, diap1, diap1/thread, inhibitor of apoptosis, inhibitor of apoptosis protein 1, inhibitor of apoptosis-1, l(3)72CDe, l(3)72Dc, l(3)S030605, l(3)S030605b, l(3)S106503, l(3)j5C8, lethal (3) 72CDe, rosophila inhibitor of apoptosis protein )
Protein Name(s) thread,
External Links
FB FBgn0260635

Annotations

Qualifier GO ID GO term name Reference Evidence Code with/from Aspect Notes Status
GO:0004842

ubiquitin-protein ligase activity

FB:FBrf0156082
PMID:12441239[1]

TAS: Traceable Author Statement

F

From FB

GO:0005515

protein binding

FB:FBrf0194448
PMID:16887178[2]

IPI: Inferred from Physical Interaction

FB:FBgn0086657

F

From FB

GO:0005622

intracellular

FB:FBrf0174215

IEA: Inferred from Electronic Annotation

InterPro:IPR001370

C

From FB

GO:0006513

protein monoubiquitination

FB:FBrf0156082
PMID:12441239[1]

TAS: Traceable Author Statement

P

From FB

GO:0006915

apoptotic process

FB:FBrf0125392
PMID:10675328[3]

IPI: Inferred from Physical Interaction

FB:FBgn0003997

P

From FB

GO:0006915

apoptotic process

FB:FBrf0125392
PMID:10675328[3]

IPI: Inferred from Physical Interaction

FB:FBgn0011706

P

From FB

GO:0006915

apoptotic process

FB:FBrf0149068
PMID:12072176[4]

TAS: Traceable Author Statement

P

From FB

GO:0006915

apoptotic process

FB:FBrf0173268
PMID:12938178[5]

NAS: Non-traceable Author Statement

P

From FB

GO:0006916

anti-apoptosis

FB:FBrf0104543
PMID:10200511[6]

IDA: Inferred from Direct Assay

P

From FB

GO:0006916

anti-apoptosis

FB:FBrf0111320
PMID:10511707[7]

TAS: Traceable Author Statement

P

From FB

GO:0006916

anti-apoptosis

FB:FBrf0124290

NAS: Non-traceable Author Statement

P

From FB

GO:0006916

anti-apoptosis

FB:FBrf0125392
PMID:10675328[3]

IGI: Inferred from Genetic Interaction

FB:FBgn0003997

P

From FB

GO:0006916

anti-apoptosis

FB:FBrf0125392
PMID:10675328[3]

IGI: Inferred from Genetic Interaction

FB:FBgn0011706

P

From FB

GO:0006916

anti-apoptosis

FB:FBrf0132215
PMID:11178240[8]

TAS: Traceable Author Statement

P

From FB

GO:0006916

anti-apoptosis

FB:FBrf0134786
PMID:11048731[9]

NAS: Non-traceable Author Statement

P

From FB

GO:0006916

anti-apoptosis

FB:FBrf0147184
PMID:12006672[10]

TAS: Traceable Author Statement

P

From FB

GO:0006916

anti-apoptosis

FB:FBrf0156082
PMID:12441239[1]

TAS: Traceable Author Statement

P

From FB

GO:0006916

anti-apoptosis

FB:FBrf0161621

TAS: Traceable Author Statement

P

From FB

GO:0006916

anti-apoptosis

FB:FBrf0167429
PMID:14644196[11]

TAS: Traceable Author Statement

P

From FB

GO:0007275

multicellular organismal development

FB:FBrf0132215
PMID:11178240[8]

TAS: Traceable Author Statement

P

From FB

GO:0007289

spermatid nucleus differentiation

FB:FBrf0167989
PMID:14737191[12]

IMP: Inferred from Mutant Phenotype

P

From FB

GO:0007298

border follicle cell migration

FB:FBrf0179220
PMID:15242648[13]

IGI: Inferred from Genetic Interaction

FB:FBgn0010333

P

From FB

GO:0007298

border follicle cell migration

FB:FBrf0179220
PMID:15242648[13]

IMP: Inferred from Mutant Phenotype

P

From FB

GO:0007298

border follicle cell migration

FB:FBrf0201428
PMID:17483425[14]

IMP: Inferred from Mutant Phenotype

P

From FB

GO:0007423

sensory organ development

FB:FBrf0190361
PMID:16222340[15]

IMP: Inferred from Mutant Phenotype

P

From FB

GO:0008270

zinc ion binding

FB:FBrf0174215

IEA: Inferred from Electronic Annotation

InterPro:IPR001841

F

From FB

GO:0008354

germ cell migration

FB:FBrf0160454
PMID:12814944[16]

TAS: Traceable Author Statement

P

From FB

GO:0008407

chaeta morphogenesis

FB:FBrf0209002
PMID:19822670[17]

IMP: Inferred from Mutant Phenotype

P

From FB

GO:0009987

cellular process

FB:FBrf0175143
PMID:14764878[18]

IMP: Inferred from Mutant Phenotype

P

From FB

GO:0019788

NEDD8 ligase activity

FB:FBrf0212528
PMID:21145488[19]

IDA: Inferred from Direct Assay

F

From FB

GO:0019899

enzyme binding

FB:FBrf0212528
PMID:21145488[19]

IPI: Inferred from Physical Interaction

FB:FBgn0035853

F

From FB

GO:0031398

positive regulation of protein ubiquitination

FB:FBrf0206305
PMID:19026784[20]

IDA: Inferred from Direct Assay

P

From FB

GO:0042787

protein ubiquitination involved in ubiquitin-dependent protein catabolic process

FB:FBrf0160832
PMID:12850443[21]

TAS: Traceable Author Statement

P

From FB

GO:0042787

protein ubiquitination involved in ubiquitin-dependent protein catabolic process

FB:FBrf0167429
PMID:14644196[11]

TAS: Traceable Author Statement

P

From FB

GO:0043066

negative regulation of apoptotic process

FB:FBrf0085197

IMP: Inferred from Mutant Phenotype

P

From FB

GO:0043066

negative regulation of apoptotic process

FB:FBrf0085197

ISS: Inferred from Sequence or Structural Similarity

P

From FB

GO:0043066

negative regulation of apoptotic process

FB:FBrf0105495

ISS: Inferred from Sequence or Structural Similarity

UniProtKB:P98170

P

From FB

GO:0043066

negative regulation of apoptotic process

FB:FBrf0111320
PMID:10511707[7]

TAS: Traceable Author Statement

P

From FB

GO:0043066

negative regulation of apoptotic process

FB:FBrf0156082
PMID:12441239[1]

TAS: Traceable Author Statement

P

From FB

GO:0043154

negative regulation of cysteine-type endopeptidase activity involved in apoptotic process

FB:FBrf0134503
PMID:11139276[22]

TAS: Traceable Author Statement

P

From FB

GO:0043154

negative regulation of cysteine-type endopeptidase activity involved in apoptotic process

FB:FBrf0149068
PMID:12072176[4]

TAS: Traceable Author Statement

P

From FB

GO:0043154

negative regulation of cysteine-type endopeptidase activity involved in apoptotic process

FB:FBrf0167429
PMID:14644196[11]

TAS: Traceable Author Statement

P

From FB

GO:0043154

negative regulation of cysteine-type endopeptidase activity involved in apoptotic process

FB:FBrf0192581
PMID:16485033[23]

IGI: Inferred from Genetic Interaction

FB:FBgn0019972

P

From FB

GO:0043154

negative regulation of cysteine-type endopeptidase activity involved in apoptotic process

FB:FBrf0192581
PMID:16485033[23]

IGI: Inferred from Genetic Interaction

FB:FBgn0024252

P

From FB

GO:0043154

negative regulation of cysteine-type endopeptidase activity involved in apoptotic process

FB:FBrf0192581
PMID:16485033[23]

IGI: Inferred from Genetic Interaction

FB:FBgn0026404

P

From FB

GO:0045035

sensory organ precursor cell division

FB:FBrf0209002
PMID:19822670[17]

IGI: Inferred from Genetic Interaction

FB:FBgn0086657

P

From FB

GO:0046673

negative regulation of compound eye retinal cell programmed cell death

FB:FBrf0192581
PMID:16485033[23]

IMP: Inferred from Mutant Phenotype

P

From FB

GO:0048800

antennal morphogenesis

FB:FBrf0179745
PMID:15464574[24]

IMP: Inferred from Mutant Phenotype

P

From FB


Notes

References

See Help:References for how to manage references in GONUTS.
  1. 1.0 1.1 1.2 1.3 Ditzel M & Meier P (2002) IAP degradation: decisive blow or altruistic sacrifice? Trends Cell Biol 12: 449-52 PubMed GONUTS page
  2. Kuranaga E et al. (2006) Drosophila IKK-related kinase regulates nonapoptotic function of caspases via degradation of IAPs. Cell 126: 583-96 PubMed GONUTS page
  3. 3.0 3.1 3.2 3.3 Goyal L et al. (2000) Induction of apoptosis by Drosophila reaper, hid and grim through inhibition of IAP function. EMBO J 19: 589-97 PubMed GONUTS page
  4. 4.0 4.1 Richardson H & Kumar S (2002) Death to flies: Drosophila as a model system to study programmed cell death. J Immunol Methods 265: 21-38 PubMed GONUTS page
  5. Lawen A (2003) Apoptosis-an introduction. Bioessays 25: 888-96 PubMed GONUTS page
  6. Hawkins CJ et al. (1998) Anti-apoptotic potential of insect cellular and viral IAPs in mammalian cells. Cell Death Differ 5: 569-76 PubMed GONUTS page
  7. 7.0 7.1 Abrams JM (1999) An emerging blueprint for apoptosis in Drosophila. Trends Cell Biol 9: 435-40 PubMed GONUTS page
  8. 8.0 8.1 Tittel JN & Steller H (2000) A comparison of programmed cell death between species. Genome Biol 1: REVIEWS0003 PubMed GONUTS page
  9. Meier P et al. (2000) Apoptosis in development. Nature 407: 796-801 PubMed GONUTS page
  10. Gorski S & Marra M (2002) Programmed cell death takes flight: genetic and genomic approaches to gene discovery in Drosophila. Physiol Genomics 9: 59-69 PubMed GONUTS page
  11. 11.0 11.1 11.2 Bergmann A et al. (2003) Regulators of IAP function: coming to grips with the grim reaper. Curr Opin Cell Biol 15: 717-24 PubMed GONUTS page
  12. Huh JR et al. (2004) Multiple apoptotic caspase cascades are required in nonapoptotic roles for Drosophila spermatid individualization. PLoS Biol 2: E15 PubMed GONUTS page
  13. 13.0 13.1 Geisbrecht ER & Montell DJ (2004) A role for Drosophila IAP1-mediated caspase inhibition in Rac-dependent cell migration. Cell 118: 111-25 PubMed GONUTS page
  14. Mathieu J et al. (2007) A sensitized PiggyBac-based screen for regulators of border cell migration in Drosophila. Genetics 176: 1579-90 PubMed GONUTS page
  15. Kanuka H et al. (2005) Drosophila caspase transduces Shaggy/GSK-3beta kinase activity in neural precursor development. EMBO J 24: 3793-806 PubMed GONUTS page
  16. Coffman CR (2003) Cell migration and programmed cell death of Drosophila germ cells. Ann N Y Acad Sci 995: 117-26 PubMed GONUTS page
  17. 17.0 17.1 Koto A et al. (2009) Temporal regulation of Drosophila IAP1 determines caspase functions in sensory organ development. J Cell Biol 187: 219-31 PubMed GONUTS page
  18. Boutros M et al. (2004) Genome-wide RNAi analysis of growth and viability in Drosophila cells. Science 303: 832-5 PubMed GONUTS page
  19. 19.0 19.1 Broemer M et al. (2010) Systematic in vivo RNAi analysis identifies IAPs as NEDD8-E3 ligases. Mol Cell 40: 810-22 PubMed GONUTS page
  20. Ditzel M et al. (2008) Inactivation of effector caspases through nondegradative polyubiquitylation. Mol Cell 32: 540-53 PubMed GONUTS page
  21. Ou CY et al. (2003) Control of protein degradation by E3 ubiquitin ligases in Drosophila eye development. Trends Genet 19: 382-9 PubMed GONUTS page
  22. Kumar S & Doumanis J (2000) The fly caspases. Cell Death Differ 7: 1039-44 PubMed GONUTS page
  23. 23.0 23.1 23.2 23.3 Leulier F et al. (2006) Systematic in vivo RNAi analysis of putative components of the Drosophila cell death machinery. Cell Death Differ 13: 1663-74 PubMed GONUTS page
  24. Cullen K & McCall K (2004) Role of programmed cell death in patterning the Drosophila antennal arista. Dev Biol 275: 82-92 PubMed GONUTS page
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