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HIF1A and MCM7
Number of citations of the paper that reports this interaction (PubMedID
21658608
)
33
Data Source:
BioGRID
(affinity chromatography technology, affinity chromatography technology, pull down)
HIF1A
MCM7
Description
hypoxia inducible factor 1 subunit alpha
minichromosome maintenance complex component 7
Image
No pdb structure
GO Annotations
Cellular Component
Nuclear Chromatin
Cell
Nucleus
Nucleoplasm
Transcription Factor Complex
Cytoplasm
Cytosol
Nuclear Body
Nuclear Speck
Motile Cilium
Protein-containing Complex
RNA Polymerase II Transcription Factor Complex
Axon Cytoplasm
Nuclear Chromosome, Telomeric Region
Chromatin
Nucleus
Nucleoplasm
Nucleolus
Cytosol
Membrane
MCM Complex
Molecular Function
RNA Polymerase II Regulatory Region Sequence-specific DNA Binding
DNA-binding Transcription Factor Activity, RNA Polymerase II-specific
DNA-binding Transcription Activator Activity, RNA Polymerase II-specific
P53 Binding
DNA-binding Transcription Factor Activity
Protein Binding
Transcription Factor Binding
Enzyme Binding
Protein Kinase Binding
Protein Domain Specific Binding
Ubiquitin Protein Ligase Binding
Histone Acetyltransferase Binding
Nuclear Hormone Receptor Binding
Histone Deacetylase Binding
Sequence-specific DNA Binding
Protein Heterodimerization Activity
Hsp90 Protein Binding
E-box Binding
DNA Binding
DNA Helicase Activity
DNA Replication Origin Binding
Single-stranded DNA Binding
Protein Binding
ATP Binding
Single-stranded DNA-dependent ATP-dependent 3'-5' DNA Helicase Activity
Biological Process
Angiogenesis
Response To Hypoxia
Neural Crest Cell Migration
Epithelial To Mesenchymal Transition
Embryonic Placenta Development
B-1 B Cell Homeostasis
Positive Regulation Of Endothelial Cell Proliferation
Heart Looping
Positive Regulation Of Neuroblast Proliferation
Connective Tissue Replacement Involved In Inflammatory Response Wound Healing
Outflow Tract Morphogenesis
Cardiac Ventricle Morphogenesis
Lactate Metabolic Process
Regulation Of Transcription, DNA-templated
Regulation Of Transcription By RNA Polymerase II
Transcription By RNA Polymerase II
Cellular Iron Ion Homeostasis
Signal Transduction
Lactation
Visual Learning
Response To Iron Ion
Regulation Of Gene Expression
Vascular Endothelial Growth Factor Production
Positive Regulation Of Vascular Endothelial Growth Factor Production
Positive Regulation Of Gene Expression
Negative Regulation Of Gene Expression
Positive Regulation Of Epithelial Cell Migration
Positive Regulation Of Receptor Biosynthetic Process
Response To Muscle Activity
Positive Regulation Of Macroautophagy
Protein Ubiquitination
Protein Deubiquitination
Cytokine-mediated Signaling Pathway
Axonal Transport Of Mitochondrion
Neural Fold Elevation Formation
Cerebral Cortex Development
Negative Regulation Of Bone Mineralization
Positive Regulation Of Vascular Endothelial Growth Factor Receptor Signaling Pathway
Negative Regulation Of TOR Signaling
Oxygen Homeostasis
Positive Regulation Of Chemokine Production
Regulation Of Transforming Growth Factor Beta2 Production
Collagen Metabolic Process
Embryonic Hemopoiesis
Positive Regulation Of Insulin Secretion Involved In Cellular Response To Glucose Stimulus
Hemoglobin Biosynthetic Process
Glucose Homeostasis
MRNA Transcription By RNA Polymerase II
Positive Regulation Of Blood Vessel Endothelial Cell Migration
Regulation Of Transcription From RNA Polymerase II Promoter In Response To Oxidative Stress
Post-translational Protein Modification
Positive Regulation Of Erythrocyte Differentiation
Positive Regulation Of Angiogenesis
Positive Regulation Of Glycolytic Process
Positive Regulation Of Transcription, DNA-templated
Negative Regulation Of Growth
Positive Regulation Of Transcription By RNA Polymerase II
Muscle Cell Cellular Homeostasis
Positive Regulation Of Hormone Biosynthetic Process
Digestive Tract Morphogenesis
Positive Regulation Of Nitric-oxide Synthase Activity
Cartilage Development
Elastin Metabolic Process
Intestinal Epithelial Cell Maturation
Epithelial Cell Differentiation Involved In Mammary Gland Alveolus Development
Iris Morphogenesis
Retina Vasculature Development In Camera-type Eye
Regulation Of Transcription From RNA Polymerase II Promoter In Response To Hypoxia
Positive Regulation Of Transcription From RNA Polymerase II Promoter In Response To Hypoxia
Positive Regulation Of Chemokine-mediated Signaling Pathway
Negative Regulation Of Thymocyte Apoptotic Process
Cellular Response To Interleukin-1
Cellular Response To Hypoxia
Dopaminergic Neuron Differentiation
Hypoxia-inducible Factor-1alpha Signaling Pathway
Positive Regulation Of Pri-miRNA Transcription By RNA Polymerase II
Negative Regulation Of Oxidative Stress-induced Neuron Intrinsic Apoptotic Signaling Pathway
Positive Regulation Of Autophagy Of Mitochondrion
Regulation Of Aerobic Respiration
Negative Regulation Of Reactive Oxygen Species Metabolic Process
Negative Regulation Of Mesenchymal Cell Apoptotic Process
G1/S Transition Of Mitotic Cell Cycle
Double-strand Break Repair Via Break-induced Replication
DNA Replication
Pre-replicative Complex Assembly Involved In Nuclear Cell Cycle DNA Replication
DNA Unwinding Involved In DNA Replication
DNA Replication Initiation
DNA Strand Elongation Involved In DNA Replication
Cellular Response To DNA Damage Stimulus
Cell Proliferation
Regulation Of Phosphorylation
Response To Drug
Cellular Response To Epidermal Growth Factor Stimulus
Cellular Response To Xenobiotic Stimulus
Pathways
Regulation of gene expression by Hypoxia-inducible Factor
Cellular response to hypoxia
Oxygen-dependent proline hydroxylation of Hypoxia-inducible Factor Alpha
NOTCH1 Intracellular Domain Regulates Transcription
Circadian Clock
Ub-specific processing proteases
Interleukin-4 and Interleukin-13 signaling
PTK6 Expression
PTK6 promotes HIF1A stabilization
Neddylation
Activation of ATR in response to replication stress
Unwinding of DNA
Assembly of the pre-replicative complex
Orc1 removal from chromatin
Activation of the pre-replicative complex
Switching of origins to a post-replicative state
Drugs
Carvedilol
2-Methoxyestradiol
N-[(1-CHLORO-4-HYDROXYISOQUINOLIN-3-YL)CARBONYL]GLYCINE
Diseases
GWAS
Interacting Genes
125 interacting genes:
AKT1
APEX1
AR
ARNT
ARNT2
ARNTL
ATM
AURKA
BNIP3
CASR
CCND2
CDC34
CDK4
CDK6
CDKN2A
CDKN2B
CITED2
COPS5
CREB3L1
CREBBP
CSNK1D
CSNK2A1
CTNNB1
DAP3
E2F7
EAF2
EGLN1
EGLN2
EGLN3
EIF5A2
EP300
EPHA2
EPO
ESRRA
ESRRB
ESRRG
ETV4
F12
FGFR4
FZR1
GATA3
GLIS2
HDAC1
HDAC2
HDAC3
HDAC5
HIF1A-AS2
HIF1AN
HIF3A
HNF4A
HSP90AA1
IKBKG
ISG15
JUN
KPNA1
KPNA3
KPNA4
KPNA5
KPNA6
LATS2
LINC01139
LRRK2
MAFG
MAFK
MAP2K3
MAP2K5
MAPK1
MAPK3
MAX
MCL1
MCM7
MDM2
MTA1
MYC
NAA10
NAA11
NBN
NCOA1
NCOA2
NDN
NEDD8
NF2
NQO1
NR4A1
OS9
PER1
PGK1
PKM
PLD1
PLD2
PLK3
PRKACA
PSMA7
PTBP1
PTK6
RACGAP1
RACK1
RB1
RORA
RUNX2
RWDD3
SAT1
SEPTIN9
SIRT2
SMAD3
SP1
SSX4
STAT3
STK11
STUB1
SUCO
SUMO1
TEAD2
TP53
TSGA10
UBE2D1
UBE2I
USP19
USP20
USP28
USP7
VEGFA
VHL
VHLL
ZC3H12A
72 interacting genes:
ABI2
AK8
APP
ASB8
C8orf34
CCDC102B
CCND1
CCNH
CDC45
CDC6
CDC7
CDK7
CDKN1B
CEP68
CHEK1
COG6
CRLS1
DBF4
DNAAF6
ELOC
ESCO2
FHL2
GOLGA2
H3-4
HIF1A
IKBKG
IKZF3
INTS6
KIFC3
LNX2
MAGEA6
MBIP
MCM10
MCM2
MCM3
MCM4
MCM5
MCM6
MCM8
MCMBP
MEOX2
MIPOL1
MNAT1
NAB2
NFKBIA
ORC1
ORC2
ORC3
ORC4
ORC5
ORC6
PLK1
PNMA1
RAD17
RB1
RBL1
RBL2
RBM8A
RBPMS
RINT1
RPA1
SMC1A
SNTA1
SP2
SSX2IP
TFIP11
TREX1
TRIM27
TRIM54
UBE3A
UBQLN1
USHBP1
Entrez ID
3091
4176
HPRD ID
04517
01154
Ensembl ID
ENSG00000100644
ENSG00000166508
Uniprot IDs
D0VY79
Q16665
A0A0S2Z4A5
C6EMX8
P33993
PDB IDs
1D7G
1H2K
1H2L
1H2M
1L3E
1L8C
1LM8
1LQB
2ILM
3HQR
3HQU
4AJY
4H6J
5JWP
5L9B
5L9V
5LA9
5LAS
6GFX
6GMR
Enriched GO Terms of Interacting Partners
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