ENO1 and FANCA |
enolase 1, (alpha) |
Fanconi anemia, complementation group A |
- Gluconeogenesis
- Glucose metabolism
- Myoclonic epilepsy of Lafora
- Glycogen storage diseases
- Glycolysis
- Metabolism of carbohydrates
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ENO1 and YWHAQ |
enolase 1, (alpha) |
tyrosine 3-monooxygenase/tryptophan 5-monooxygenase activation protein, theta |
- Gluconeogenesis
- Glucose metabolism
- Myoclonic epilepsy of Lafora
- Glycogen storage diseases
- Glycolysis
- Metabolism of carbohydrates
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- Activation of BAD and translocation to mitochondria
- Programmed Cell Death
- Translocation of GLUT4 to the plasma membrane
- Activation of BH3-only proteins
- Intrinsic Pathway for Apoptosis
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ENO1 and PLG |
enolase 1, (alpha) |
plasminogen |
- Gluconeogenesis
- Glucose metabolism
- Myoclonic epilepsy of Lafora
- Glycogen storage diseases
- Glycolysis
- Metabolism of carbohydrates
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- Signaling by PDGF
- Regulation of Insulin-like Growth Factor (IGF) transport and uptake by Insulin-like Growth Factor Binding Proteins (IGFBPs)
- Activation of Matrix Metalloproteinases
- Dissolution of Fibrin Clot
- Platelet degranulation
- Degradation of the extracellular matrix
- Response to elevated platelet cytosolic Ca2+
- Platelet activation, signaling and aggregation
- Orphan transporters
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- Alteplase
- Urokinase
- Reteplase
- Anistreplase
- Tenecteplase
- Streptokinase
- Tranexamic Acid
- Aminocaproic Acid
- Bicine
- Aprotinin
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ENO1 and AGTPBP1 |
enolase 1, (alpha) |
ATP/GTP binding protein 1 |
- Gluconeogenesis
- Glucose metabolism
- Myoclonic epilepsy of Lafora
- Glycogen storage diseases
- Glycolysis
- Metabolism of carbohydrates
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ENO1 and TRAPPC2 |
enolase 1, (alpha) |
trafficking protein particle complex 2 |
- Gluconeogenesis
- Glucose metabolism
- Myoclonic epilepsy of Lafora
- Glycogen storage diseases
- Glycolysis
- Metabolism of carbohydrates
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ENO1 and GRB2 |
enolase 1, (alpha) |
growth factor receptor-bound protein 2 |
- Gluconeogenesis
- Glucose metabolism
- Myoclonic epilepsy of Lafora
- Glycogen storage diseases
- Glycolysis
- Metabolism of carbohydrates
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- Pegademase bovine
- 4-[(10s,14s,18s)-18-(2-Amino-2-Oxoethyl)-14-(1-Naphthylmethyl)-8,17,20-Trioxo-7,16,19-Triazaspiro[5.14]Icos-11-En-10-Yl]Benzylphosphonic Acid
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ENO1 and FYN |
enolase 1, (alpha) |
FYN proto-oncogene, Src family tyrosine kinase |
- Gluconeogenesis
- Glucose metabolism
- Myoclonic epilepsy of Lafora
- Glycogen storage diseases
- Glycolysis
- Metabolism of carbohydrates
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- Signaling by the B Cell Receptor (BCR)
- Signaling by FGFR in disease
- DCC mediated attractive signaling
- Netrin mediated repulsion signals
- Signaling by EGFRvIII in Cancer
- Nef and signal transduction
- Signaling by SCF-KIT
- DAP12 signaling
- Downstream signaling events of B Cell Receptor (BCR)
- Regulation of KIT signaling
- PI3K/AKT activation
- PI-3K cascade
- EPH-Ephrin signaling
- Fcgamma receptor (FCGR) dependent phagocytosis
- FCGR activation
- Signaling by PDGF
- DAP12 interactions
- GAB1 signalosome
- Host Interactions of HIV factors
- CD28 co-stimulation
- CD28 dependent PI3K/Akt signaling
- The role of Nef in HIV-1 replication and disease pathogenesis
- Signaling by ERBB4
- Constitutive PI3K/AKT Signaling in Cancer
- Role of LAT2/NTAL/LAB on calcium mobilization
- PI3K events in ERBB4 signaling
- Signaling by ERBB2
- Signaling by EGFR
- Signaling by Interleukins
- Signaling by VEGF
- Downstream signal transduction
- Sema3A PAK dependent Axon repulsion
- Fc epsilon receptor (FCERI) signaling
- Signaling by EGFR in Cancer
- Nephrin interactions
- SEMA3A-Plexin repulsion signaling by inhibiting Integrin adhesion
- CRMPs in Sema3A signaling
- PI3K/AKT Signaling in Cancer
- Platelet activation, signaling and aggregation
- Interleukin-3, 5 and GM-CSF signaling
- Adaptive Immune System
- Platelet Adhesion to exposed collagen
- Axon guidance
- Costimulation by the CD28 family
- PIP3 activates AKT signaling
- HIV Infection
- VEGFA-VEGFR2 Pathway
- EPHB-mediated forward signaling
- EPHA-mediated growth cone collapse
- Ephrin signaling
- EPH-ephrin mediated repulsion of cells
- PI3K events in ERBB2 signaling
- Regulation of signaling by CBL
- Downstream signaling of activated FGFR
- NCAM signaling for neurite out-growth
- Netrin-1 signaling
- Antigen activates B Cell Receptor (BCR) leading to generation of second messengers
- Innate Immune System
- Signalling by NGF
- Semaphorin interactions
- CTLA4 inhibitory signaling
- Cytokine Signaling in Immune system
- Signaling by Ligand-Responsive EGFR Variants in Cancer
- NGF signalling via TRKA from the plasma membrane
- Signaling by Overexpressed Wild-Type EGFR in Cancer
- PECAM1 interactions
- CD28 dependent Vav1 pathway
- Signaling by FGFR
- Cell surface interactions at the vascular wall
- GPVI-mediated activation cascade
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- Dasatinib
- 1-Methoxy-2-[2-(2-Methoxy-Ethoxy]-Ethane
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ENO1 and TERT |
enolase 1, (alpha) |
telomerase reverse transcriptase |
- Gluconeogenesis
- Glucose metabolism
- Myoclonic epilepsy of Lafora
- Glycogen storage diseases
- Glycolysis
- Metabolism of carbohydrates
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- Telomere Maintenance
- Chromosome Maintenance
- misspliced LRP5 mutants have enhanced beta-catenin-dependent signaling
- TCF dependent signaling in response to WNT
- RNF mutants show enhanced WNT signaling and proliferation
- formation of the beta-catenin:TCF transactivating complex
- Extension of Telomeres
- Telomere Extension By Telomerase
- XAV939 inhibits tankyrase, stabilizing AXIN
- Signaling by Wnt
- Signaling by WNT in cancer
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ENO1 and BHLHE40 |
enolase 1, (alpha) |
basic helix-loop-helix family, member e40 |
- Gluconeogenesis
- Glucose metabolism
- Myoclonic epilepsy of Lafora
- Glycogen storage diseases
- Glycolysis
- Metabolism of carbohydrates
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- BMAL1:CLOCK,NPAS2 activates circadian gene expression
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ENO1 and YWHAZ |
enolase 1, (alpha) |
tyrosine 3-monooxygenase/tryptophan 5-monooxygenase activation protein, zeta |
- Gluconeogenesis
- Glucose metabolism
- Myoclonic epilepsy of Lafora
- Glycogen storage diseases
- Glycolysis
- Metabolism of carbohydrates
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- Translocation of GLUT4 to the plasma membrane
- Activation of BH3-only proteins
- Signaling by Wnt
- deactivation of the beta-catenin transactivating complex
- Rap1 signalling
- RNF mutants show enhanced WNT signaling and proliferation
- Programmed Cell Death
- XAV939 inhibits tankyrase, stabilizing AXIN
- Intrinsic Pathway for Apoptosis
- Regulation of mRNA stability by proteins that bind AU-rich elements
- misspliced LRP5 mutants have enhanced beta-catenin-dependent signaling
- Cytokine Signaling in Immune system
- Activation of BAD and translocation to mitochondria
- Signaling by Interleukins
- TCF dependent signaling in response to WNT
- KSRP destabilizes mRNA
- GP1b-IX-V activation signalling
- Signaling by WNT in cancer
- Platelet activation, signaling and aggregation
- Interleukin-3, 5 and GM-CSF signaling
- Adaptive Immune System
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ENO1 and LIG4 |
enolase 1, (alpha) |
ligase IV, DNA, ATP-dependent |
- Gluconeogenesis
- Glucose metabolism
- Myoclonic epilepsy of Lafora
- Glycogen storage diseases
- Glycolysis
- Metabolism of carbohydrates
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- HIV Life Cycle
- Nonhomologous End-joining (NHEJ)
- HIV Infection
- Integration of provirus
- Double-Strand Break Repair
- 2-LTR circle formation
- Early Phase of HIV Life Cycle
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ENO1 and UPF2 |
enolase 1, (alpha) |
UPF2 regulator of nonsense transcripts homolog (yeast) |
- Gluconeogenesis
- Glucose metabolism
- Myoclonic epilepsy of Lafora
- Glycogen storage diseases
- Glycolysis
- Metabolism of carbohydrates
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- Nonsense-Mediated Decay (NMD)
- Nonsense Mediated Decay (NMD) enhanced by the Exon Junction Complex (EJC)
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ENO1 and PCNA |
enolase 1, (alpha) |
proliferating cell nuclear antigen |
- Gluconeogenesis
- Glucose metabolism
- Myoclonic epilepsy of Lafora
- Glycogen storage diseases
- Glycolysis
- Metabolism of carbohydrates
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- Nucleotide Excision Repair
- Gap-filling DNA repair synthesis and ligation in TC-NER
- Extension of Telomeres
- Repair synthesis for gap-filling by DNA polymerase in TC-NER
- Leading Strand Synthesis
- Mismatch repair (MMR) directed by MSH2:MSH6 (MutSalpha)
- DNA strand elongation
- Mismatch Repair
- Polymerase switching
- Telomere Maintenance
- G1/S Transition
- Removal of DNA patch containing abasic residue
- G1/S-Specific Transcription
- Resolution of Abasic Sites (AP sites)
- Mitotic G1-G1/S phases
- Removal of the Flap Intermediate from the C-strand
- Base Excision Repair
- E2F mediated regulation of DNA replication
- Polymerase switching on the C-strand of the telomere
- Chromosome Maintenance
- Synthesis of DNA
- Lagging Strand Synthesis
- Processive synthesis on the C-strand of the telomere
- Processive synthesis on the lagging strand
- G0 and Early G1
- Telomere C-strand (Lagging Strand) Synthesis
- S Phase
- Repair synthesis of patch ~27-30 bases long by DNA polymerase
- Cell Cycle, Mitotic
- Gap-filling DNA repair synthesis and ligation in GG-NER
- Removal of the Flap Intermediate
- Global Genomic NER (GG-NER)
- Mismatch repair (MMR) directed by MSH2:MSH3 (MutSbeta)
- Resolution of AP sites via the multiple-nucleotide patch replacement pathway
- Transcription-coupled NER (TC-NER)
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ENO1 and HDAC1 |
enolase 1, (alpha) |
histone deacetylase 1 |
- Gluconeogenesis
- Glucose metabolism
- Myoclonic epilepsy of Lafora
- Glycogen storage diseases
- Glycolysis
- Metabolism of carbohydrates
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- Loss of Function of TGFBR2 in Cancer
- Signaling by NOTCH1 HD Domain Mutants in Cancer
- RNA Polymerase I, RNA Polymerase III, and Mitochondrial Transcription
- misspliced GSK3beta mutants stabilize beta-catenin
- T41 mutants of beta-catenin aren't phosphorylated
- SMAD2/3 MH2 Domain Mutants in Cancer
- TCF7L2 mutants don't bind CTBP
- truncated APC mutants destabilize the destruction complex
- Signaling by Wnt
- Downregulation of SMAD2/3:SMAD4 transcriptional activity
- SMAD2/SMAD3:SMAD4 heterotrimer regulates transcription
- Transcriptional activity of SMAD2/SMAD3:SMAD4 heterotrimer
- Signaling by NOTCH1 t(7;9)(NOTCH1:M1580_K2555) Translocation Mutant
- Degradation of beta-catenin by the destruction complex
- NoRC negatively regulates rRNA expression
- Generic Transcription Pathway
- S33 mutants of beta-catenin aren't phosphorylated
- AXIN mutants destabilize the destruction complex, activating WNT signaling
- RNF mutants show enhanced WNT signaling and proliferation
- Signaling by NOTCH1 in Cancer
- Mitotic G1-G1/S phases
- truncations of AMER1 destabilize the destruction complex
- TGFBR2 MSI Frameshift Mutants in Cancer
- SMAD2/3 Phosphorylation Motif Mutants in Cancer
- Chromatin organization
- misspliced LRP5 mutants have enhanced beta-catenin-dependent signaling
- Signaling by NOTCH
- formation of the beta-catenin:TCF transactivating complex
- phosphorylation site mutants of CTNNB1 are not targeted to the proteasome by the destruction complex
- Loss of Function of SMAD4 in Cancer
- AXIN missense mutants destabilize the destruction complex
- S45 mutants of beta-catenin aren't phosphorylated
- TGFBR1 KD Mutants in Cancer
- Factors involved in megakaryocyte development and platelet production
- Chromatin modifying enzymes
- deletions in the AMER1 gene destabilize the destruction complex
- AMER1 mutants destabilize the destruction complex
- Signaling by NOTCH1 PEST Domain Mutants in Cancer
- Constitutive Signaling by NOTCH1 PEST Domain Mutants
- Signaling by NOTCH1 HD+PEST Domain Mutants in Cancer
- RNA Polymerase I Transcription Initiation
- APC truncation mutants have impaired AXIN binding
- RNA Polymerase I Promoter Clearance
- TGFBR1 LBD Mutants in Cancer
- deactivation of the beta-catenin transactivating complex
- APC truncation mutants are not K63 polyubiquitinated
- S37 mutants of beta-catenin aren't phosphorylated
- Signaling by NOTCH1
- XAV939 inhibits tankyrase, stabilizing AXIN
- Constitutive Signaling by NOTCH1 HD+PEST Domain Mutants
- FBXW7 Mutants and NOTCH1 in Cancer
- Signalling by NGF
- HDACs deacetylate histones
- p75NTR negatively regulates cell cycle via SC1
- Loss of Function of SMAD2/3 in Cancer
- RNA Polymerase I Transcription
- TGFBR2 Kinase Domain Mutants in Cancer
- Epigenetic regulation of gene expression
- p75 NTR receptor-mediated signalling
- G0 and Early G1
- Negative epigenetic regulation of rRNA expression
- repression of WNT target genes
- Loss of Function of TGFBR1 in Cancer
- Cell Cycle, Mitotic
- NOTCH1 Intracellular Domain Regulates Transcription
- Signaling by TGF-beta Receptor Complex in Cancer
- Signaling by TGF-beta Receptor Complex
- TCF dependent signaling in response to WNT
- deletions in the AXIN genes in hepatocellular carcinoma result in elevated WNT signaling
- Signaling by WNT in cancer
- SMAD4 MH2 Domain Mutants in Cancer
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EP300 and NFKB1 |
E1A binding protein p300 |
nuclear factor of kappa light polypeptide gene enhancer in B-cells 1 |
- Signaling by NOTCH1 HD Domain Mutants in Cancer
- Metabolism of lipids and lipoproteins
- Signaling by Wnt
- NOTCH2 intracellular domain regulates transcription
- Regulation of gene expression by Hypoxia-inducible Factor
- Signaling by NOTCH1 t(7;9)(NOTCH1:M1580_K2555) Translocation Mutant
- Signaling by NOTCH2
- Pre-NOTCH Transcription and Translation
- RNF mutants show enhanced WNT signaling and proliferation
- Signaling by NOTCH1 in Cancer
- Chromatin organization
- misspliced LRP5 mutants have enhanced beta-catenin-dependent signaling
- Signaling by NOTCH
- formation of the beta-catenin:TCF transactivating complex
- Factors involved in megakaryocyte development and platelet production
- Chromatin modifying enzymes
- LRR FLII-interacting protein 1 (LRRFIP1) activates type I IFN production
- Signaling by NOTCH1 PEST Domain Mutants in Cancer
- Mitotic G2-G2/M phases
- Constitutive Signaling by NOTCH1 PEST Domain Mutants
- PPARA activates gene expression
- Cellular response to hypoxia
- Regulation of Hypoxia-inducible Factor (HIF) by oxygen
- Signaling by NOTCH1 HD+PEST Domain Mutants in Cancer
- Attenuation phase
- G2/M Transition
- HATs acetylate histones
- RORA activates circadian gene expression
- HSF1-dependent transactivation
- TRAF3-dependent IRF activation pathway
- Signaling by NOTCH1
- Transcriptional regulation of white adipocyte differentiation
- XAV939 inhibits tankyrase, stabilizing AXIN
- Pre-NOTCH Expression and Processing
- Constitutive Signaling by NOTCH1 HD+PEST Domain Mutants
- FBXW7 Mutants and NOTCH1 in Cancer
- Innate Immune System
- Fatty acid, triacylglycerol, and ketone body metabolism
- Cytosolic sensors of pathogen-associated DNA
- Cellular response to heat stress
- REV-ERBA represses gene expression
- Cell Cycle, Mitotic
- RIG-I/MDA5 mediated induction of IFN-alpha/beta pathways
- NOTCH1 Intracellular Domain Regulates Transcription
- TCF dependent signaling in response to WNT
- TRAF6 mediated IRF7 activation
- Regulation of lipid metabolism by Peroxisome proliferator-activated receptor alpha (PPARalpha)
- Signaling by WNT in cancer
- BMAL1:CLOCK,NPAS2 activates circadian gene expression
- Polo-like kinase mediated events
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- Signaling by the B Cell Receptor (BCR)
- NF-kB is activated and signals survival
- Downstream TCR signaling
- Toll Like Receptor 7/8 (TLR7/8) Cascade
- Cellular Senescence
- RIP-mediated NFkB activation via ZBP1
- Toll Like Receptor TLR6:TLR2 Cascade
- DEx/H-box helicases activate type I IFN and inflammatory cytokines production
- Activated TLR4 signalling
- Toll Like Receptor TLR1:TLR2 Cascade
- Downstream signaling events of B Cell Receptor (BCR)
- FCERI mediated NF-kB activation
- MyD88 cascade initiated on plasma membrane
- Toll Like Receptor 5 (TLR5) Cascade
- ZBP1(DAI) mediated induction of type I IFNs
- p75NTR signals via NF-kB
- Transcriptional regulation of white adipocyte differentiation
- MyD88 dependent cascade initiated on endosome
- TRAF6 mediated induction of NFkB and MAP kinases upon TLR7/8 or 9 activation
- MyD88:Mal cascade initiated on plasma membrane
- Toll Like Receptor 9 (TLR9) Cascade
- Innate Immune System
- Regulated proteolysis of p75NTR
- Signalling by NGF
- TRIF-mediated TLR3/TLR4 signaling
- Cytosolic sensors of pathogen-associated DNA
- Senescence-Associated Secretory Phenotype (SASP)
- Cytokine Signaling in Immune system
- p75 NTR receptor-mediated signalling
- MyD88-independent cascade
- Toll Like Receptor 2 (TLR2) Cascade
- RIG-I/MDA5 mediated induction of IFN-alpha/beta pathways
- Signaling by Interleukins
- TCR signaling
- Toll-Like Receptors Cascades
- Toll Like Receptor 10 (TLR10) Cascade
- Interleukin-1 processing
- Toll Like Receptor 3 (TLR3) Cascade
- Toll Like Receptor 4 (TLR4) Cascade
- Activation of NF-kappaB in B cells
- Fc epsilon receptor (FCERI) signaling
- TRAF6 mediated NF-kB activation
- Interleukin-1 signaling
- Adaptive Immune System
- TAK1 activates NFkB by phosphorylation and activation of IKKs complex
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- Thalidomide
- Pranlukast
- Triflusal
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EP300 and TCF4 |
E1A binding protein p300 |
transcription factor 4 |
- Signaling by NOTCH1 HD Domain Mutants in Cancer
- Metabolism of lipids and lipoproteins
- Signaling by Wnt
- NOTCH2 intracellular domain regulates transcription
- Regulation of gene expression by Hypoxia-inducible Factor
- Signaling by NOTCH1 t(7;9)(NOTCH1:M1580_K2555) Translocation Mutant
- Signaling by NOTCH2
- Pre-NOTCH Transcription and Translation
- RNF mutants show enhanced WNT signaling and proliferation
- Signaling by NOTCH1 in Cancer
- Chromatin organization
- misspliced LRP5 mutants have enhanced beta-catenin-dependent signaling
- Signaling by NOTCH
- formation of the beta-catenin:TCF transactivating complex
- Factors involved in megakaryocyte development and platelet production
- Chromatin modifying enzymes
- LRR FLII-interacting protein 1 (LRRFIP1) activates type I IFN production
- Signaling by NOTCH1 PEST Domain Mutants in Cancer
- Mitotic G2-G2/M phases
- Constitutive Signaling by NOTCH1 PEST Domain Mutants
- PPARA activates gene expression
- Cellular response to hypoxia
- Regulation of Hypoxia-inducible Factor (HIF) by oxygen
- Signaling by NOTCH1 HD+PEST Domain Mutants in Cancer
- Attenuation phase
- G2/M Transition
- HATs acetylate histones
- RORA activates circadian gene expression
- HSF1-dependent transactivation
- TRAF3-dependent IRF activation pathway
- Signaling by NOTCH1
- Transcriptional regulation of white adipocyte differentiation
- XAV939 inhibits tankyrase, stabilizing AXIN
- Pre-NOTCH Expression and Processing
- Constitutive Signaling by NOTCH1 HD+PEST Domain Mutants
- FBXW7 Mutants and NOTCH1 in Cancer
- Innate Immune System
- Fatty acid, triacylglycerol, and ketone body metabolism
- Cytosolic sensors of pathogen-associated DNA
- Cellular response to heat stress
- REV-ERBA represses gene expression
- Cell Cycle, Mitotic
- RIG-I/MDA5 mediated induction of IFN-alpha/beta pathways
- NOTCH1 Intracellular Domain Regulates Transcription
- TCF dependent signaling in response to WNT
- TRAF6 mediated IRF7 activation
- Regulation of lipid metabolism by Peroxisome proliferator-activated receptor alpha (PPARalpha)
- Signaling by WNT in cancer
- BMAL1:CLOCK,NPAS2 activates circadian gene expression
- Polo-like kinase mediated events
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- CDO in myogenesis
- Myogenesis
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EP300 and ZFPM2 |
E1A binding protein p300 |
zinc finger protein, FOG family member 2 |
- Signaling by NOTCH1 HD Domain Mutants in Cancer
- Metabolism of lipids and lipoproteins
- Signaling by Wnt
- NOTCH2 intracellular domain regulates transcription
- Regulation of gene expression by Hypoxia-inducible Factor
- Signaling by NOTCH1 t(7;9)(NOTCH1:M1580_K2555) Translocation Mutant
- Signaling by NOTCH2
- Pre-NOTCH Transcription and Translation
- RNF mutants show enhanced WNT signaling and proliferation
- Signaling by NOTCH1 in Cancer
- Chromatin organization
- misspliced LRP5 mutants have enhanced beta-catenin-dependent signaling
- Signaling by NOTCH
- formation of the beta-catenin:TCF transactivating complex
- Factors involved in megakaryocyte development and platelet production
- Chromatin modifying enzymes
- LRR FLII-interacting protein 1 (LRRFIP1) activates type I IFN production
- Signaling by NOTCH1 PEST Domain Mutants in Cancer
- Mitotic G2-G2/M phases
- Constitutive Signaling by NOTCH1 PEST Domain Mutants
- PPARA activates gene expression
- Cellular response to hypoxia
- Regulation of Hypoxia-inducible Factor (HIF) by oxygen
- Signaling by NOTCH1 HD+PEST Domain Mutants in Cancer
- Attenuation phase
- G2/M Transition
- HATs acetylate histones
- RORA activates circadian gene expression
- HSF1-dependent transactivation
- TRAF3-dependent IRF activation pathway
- Signaling by NOTCH1
- Transcriptional regulation of white adipocyte differentiation
- XAV939 inhibits tankyrase, stabilizing AXIN
- Pre-NOTCH Expression and Processing
- Constitutive Signaling by NOTCH1 HD+PEST Domain Mutants
- FBXW7 Mutants and NOTCH1 in Cancer
- Innate Immune System
- Fatty acid, triacylglycerol, and ketone body metabolism
- Cytosolic sensors of pathogen-associated DNA
- Cellular response to heat stress
- REV-ERBA represses gene expression
- Cell Cycle, Mitotic
- RIG-I/MDA5 mediated induction of IFN-alpha/beta pathways
- NOTCH1 Intracellular Domain Regulates Transcription
- TCF dependent signaling in response to WNT
- TRAF6 mediated IRF7 activation
- Regulation of lipid metabolism by Peroxisome proliferator-activated receptor alpha (PPARalpha)
- Signaling by WNT in cancer
- BMAL1:CLOCK,NPAS2 activates circadian gene expression
- Polo-like kinase mediated events
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- Factors involved in megakaryocyte development and platelet production
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EP300 and POU3F2 |
E1A binding protein p300 |
POU class 3 homeobox 2 |
- Signaling by NOTCH1 HD Domain Mutants in Cancer
- Metabolism of lipids and lipoproteins
- Signaling by Wnt
- NOTCH2 intracellular domain regulates transcription
- Regulation of gene expression by Hypoxia-inducible Factor
- Signaling by NOTCH1 t(7;9)(NOTCH1:M1580_K2555) Translocation Mutant
- Signaling by NOTCH2
- Pre-NOTCH Transcription and Translation
- RNF mutants show enhanced WNT signaling and proliferation
- Signaling by NOTCH1 in Cancer
- Chromatin organization
- misspliced LRP5 mutants have enhanced beta-catenin-dependent signaling
- Signaling by NOTCH
- formation of the beta-catenin:TCF transactivating complex
- Factors involved in megakaryocyte development and platelet production
- Chromatin modifying enzymes
- LRR FLII-interacting protein 1 (LRRFIP1) activates type I IFN production
- Signaling by NOTCH1 PEST Domain Mutants in Cancer
- Mitotic G2-G2/M phases
- Constitutive Signaling by NOTCH1 PEST Domain Mutants
- PPARA activates gene expression
- Cellular response to hypoxia
- Regulation of Hypoxia-inducible Factor (HIF) by oxygen
- Signaling by NOTCH1 HD+PEST Domain Mutants in Cancer
- Attenuation phase
- G2/M Transition
- HATs acetylate histones
- RORA activates circadian gene expression
- HSF1-dependent transactivation
- TRAF3-dependent IRF activation pathway
- Signaling by NOTCH1
- Transcriptional regulation of white adipocyte differentiation
- XAV939 inhibits tankyrase, stabilizing AXIN
- Pre-NOTCH Expression and Processing
- Constitutive Signaling by NOTCH1 HD+PEST Domain Mutants
- FBXW7 Mutants and NOTCH1 in Cancer
- Innate Immune System
- Fatty acid, triacylglycerol, and ketone body metabolism
- Cytosolic sensors of pathogen-associated DNA
- Cellular response to heat stress
- REV-ERBA represses gene expression
- Cell Cycle, Mitotic
- RIG-I/MDA5 mediated induction of IFN-alpha/beta pathways
- NOTCH1 Intracellular Domain Regulates Transcription
- TCF dependent signaling in response to WNT
- TRAF6 mediated IRF7 activation
- Regulation of lipid metabolism by Peroxisome proliferator-activated receptor alpha (PPARalpha)
- Signaling by WNT in cancer
- BMAL1:CLOCK,NPAS2 activates circadian gene expression
- Polo-like kinase mediated events
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EP300 and ITIH3 |
E1A binding protein p300 |
inter-alpha-trypsin inhibitor heavy chain 3 |
- Signaling by NOTCH1 HD Domain Mutants in Cancer
- Metabolism of lipids and lipoproteins
- Signaling by Wnt
- NOTCH2 intracellular domain regulates transcription
- Regulation of gene expression by Hypoxia-inducible Factor
- Signaling by NOTCH1 t(7;9)(NOTCH1:M1580_K2555) Translocation Mutant
- Signaling by NOTCH2
- Pre-NOTCH Transcription and Translation
- RNF mutants show enhanced WNT signaling and proliferation
- Signaling by NOTCH1 in Cancer
- Chromatin organization
- misspliced LRP5 mutants have enhanced beta-catenin-dependent signaling
- Signaling by NOTCH
- formation of the beta-catenin:TCF transactivating complex
- Factors involved in megakaryocyte development and platelet production
- Chromatin modifying enzymes
- LRR FLII-interacting protein 1 (LRRFIP1) activates type I IFN production
- Signaling by NOTCH1 PEST Domain Mutants in Cancer
- Mitotic G2-G2/M phases
- Constitutive Signaling by NOTCH1 PEST Domain Mutants
- PPARA activates gene expression
- Cellular response to hypoxia
- Regulation of Hypoxia-inducible Factor (HIF) by oxygen
- Signaling by NOTCH1 HD+PEST Domain Mutants in Cancer
- Attenuation phase
- G2/M Transition
- HATs acetylate histones
- RORA activates circadian gene expression
- HSF1-dependent transactivation
- TRAF3-dependent IRF activation pathway
- Signaling by NOTCH1
- Transcriptional regulation of white adipocyte differentiation
- XAV939 inhibits tankyrase, stabilizing AXIN
- Pre-NOTCH Expression and Processing
- Constitutive Signaling by NOTCH1 HD+PEST Domain Mutants
- FBXW7 Mutants and NOTCH1 in Cancer
- Innate Immune System
- Fatty acid, triacylglycerol, and ketone body metabolism
- Cytosolic sensors of pathogen-associated DNA
- Cellular response to heat stress
- REV-ERBA represses gene expression
- Cell Cycle, Mitotic
- RIG-I/MDA5 mediated induction of IFN-alpha/beta pathways
- NOTCH1 Intracellular Domain Regulates Transcription
- TCF dependent signaling in response to WNT
- TRAF6 mediated IRF7 activation
- Regulation of lipid metabolism by Peroxisome proliferator-activated receptor alpha (PPARalpha)
- Signaling by WNT in cancer
- BMAL1:CLOCK,NPAS2 activates circadian gene expression
- Polo-like kinase mediated events
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EP300 and BAG6 |
E1A binding protein p300 |
BCL2-associated athanogene 6 |
- Signaling by NOTCH1 HD Domain Mutants in Cancer
- Metabolism of lipids and lipoproteins
- Signaling by Wnt
- NOTCH2 intracellular domain regulates transcription
- Regulation of gene expression by Hypoxia-inducible Factor
- Signaling by NOTCH1 t(7;9)(NOTCH1:M1580_K2555) Translocation Mutant
- Signaling by NOTCH2
- Pre-NOTCH Transcription and Translation
- RNF mutants show enhanced WNT signaling and proliferation
- Signaling by NOTCH1 in Cancer
- Chromatin organization
- misspliced LRP5 mutants have enhanced beta-catenin-dependent signaling
- Signaling by NOTCH
- formation of the beta-catenin:TCF transactivating complex
- Factors involved in megakaryocyte development and platelet production
- Chromatin modifying enzymes
- LRR FLII-interacting protein 1 (LRRFIP1) activates type I IFN production
- Signaling by NOTCH1 PEST Domain Mutants in Cancer
- Mitotic G2-G2/M phases
- Constitutive Signaling by NOTCH1 PEST Domain Mutants
- PPARA activates gene expression
- Cellular response to hypoxia
- Regulation of Hypoxia-inducible Factor (HIF) by oxygen
- Signaling by NOTCH1 HD+PEST Domain Mutants in Cancer
- Attenuation phase
- G2/M Transition
- HATs acetylate histones
- RORA activates circadian gene expression
- HSF1-dependent transactivation
- TRAF3-dependent IRF activation pathway
- Signaling by NOTCH1
- Transcriptional regulation of white adipocyte differentiation
- XAV939 inhibits tankyrase, stabilizing AXIN
- Pre-NOTCH Expression and Processing
- Constitutive Signaling by NOTCH1 HD+PEST Domain Mutants
- FBXW7 Mutants and NOTCH1 in Cancer
- Innate Immune System
- Fatty acid, triacylglycerol, and ketone body metabolism
- Cytosolic sensors of pathogen-associated DNA
- Cellular response to heat stress
- REV-ERBA represses gene expression
- Cell Cycle, Mitotic
- RIG-I/MDA5 mediated induction of IFN-alpha/beta pathways
- NOTCH1 Intracellular Domain Regulates Transcription
- TCF dependent signaling in response to WNT
- TRAF6 mediated IRF7 activation
- Regulation of lipid metabolism by Peroxisome proliferator-activated receptor alpha (PPARalpha)
- Signaling by WNT in cancer
- BMAL1:CLOCK,NPAS2 activates circadian gene expression
- Polo-like kinase mediated events
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