Keyword Search: Gene Ontology, PubMed or Web (Google)
GO Keywords for 1J5K
(Here all GO term names are given that map directly to this particular structure).
negative regulation of transcription by RNA polymerase II [
GO
] [
PubMed
] [
Google
]
mRNA splicing, via spliceosome [
GO
] [
PubMed
] [
Google
]
nuclear chromatin [
GO
] [
PubMed
] [
Google
]
RNA polymerase II proximal promoter sequence-specific DNA binding [
GO
] [
PubMed
] [
Google
]
proximal promoter DNA-binding transcription activator activity, RNA polymerase II-specific [
GO
] [
PubMed
] [
Google
]
ovarian follicle development [
GO
] [
PubMed
] [
Google
]
kidney development [
GO
] [
PubMed
] [
Google
]
liver development [
GO
] [
PubMed
] [
Google
]
podosome [
GO
] [
PubMed
] [
Google
]
nucleic acid binding [
GO
] [
PubMed
] [
Google
]
DNA binding [
GO
] [
PubMed
] [
Google
]
double-stranded DNA binding [
GO
] [
PubMed
] [
Google
]
single-stranded DNA binding [
GO
] [
PubMed
] [
Google
]
RNA binding [
GO
] [
PubMed
] [
Google
]
mRNA 3'-UTR binding [
GO
] [
PubMed
] [
Google
]
protein binding [
GO
] [
PubMed
] [
Google
]
lamin binding [
GO
] [
PubMed
] [
Google
]
nucleus [
GO
] [
PubMed
] [
Google
]
nucleoplasm [
GO
] [
PubMed
] [
Google
]
spliceosomal complex [
GO
] [
PubMed
] [
Google
]
cytoplasm [
GO
] [
PubMed
] [
Google
]
mitochondrion [
GO
] [
PubMed
] [
Google
]
cytosol [
GO
] [
PubMed
] [
Google
]
focal adhesion [
GO
] [
PubMed
] [
Google
]
cell cortex [
GO
] [
PubMed
] [
Google
]
transcription, DNA-templated [
GO
] [
PubMed
] [
Google
]
regulation of transcription, DNA-templated [
GO
] [
PubMed
] [
Google
]
regulation of transcription by RNA polymerase II [
GO
] [
PubMed
] [
Google
]
transcription by RNA polymerase II [
GO
] [
PubMed
] [
Google
]
RNA processing [
GO
] [
PubMed
] [
Google
]
mRNA processing [
GO
] [
PubMed
] [
Google
]
acute-phase response [
GO
] [
PubMed
] [
Google
]
signal transduction [
GO
] [
PubMed
] [
Google
]
central nervous system development [
GO
] [
PubMed
] [
Google
]
peripheral nervous system development [
GO
] [
PubMed
] [
Google
]
aging [
GO
] [
PubMed
] [
Google
]
transcription factor binding [
GO
] [
PubMed
] [
Google
]
RNA splicing [
GO
] [
PubMed
] [
Google
]
gene expression [
GO
] [
PubMed
] [
Google
]
negative regulation of gene expression [
GO
] [
PubMed
] [
Google
]
positive regulation of neuron projection development [
GO
] [
PubMed
] [
Google
]
regulation of low-density lipoprotein particle clearance [
GO
] [
PubMed
] [
Google
]
postsynaptic density [
GO
] [
PubMed
] [
Google
]
response to activity [
GO
] [
PubMed
] [
Google
]
membrane [
GO
] [
PubMed
] [
Google
]
viral process [
GO
] [
PubMed
] [
Google
]
protein sumoylation [
GO
] [
PubMed
] [
Google
]
protein domain specific binding [
GO
] [
PubMed
] [
Google
]
cerebellum development [
GO
] [
PubMed
] [
Google
]
hippocampus development [
GO
] [
PubMed
] [
Google
]
cerebral cortex development [
GO
] [
PubMed
] [
Google
]
cell junction [
GO
] [
PubMed
] [
Google
]
lung development [
GO
] [
PubMed
] [
Google
]
pre-mRNA 3'-splice site binding [
GO
] [
PubMed
] [
Google
]
heat shock protein binding [
GO
] [
PubMed
] [
Google
]
negative regulation of protein binding [
GO
] [
PubMed
] [
Google
]
cellular response to insulin stimulus [
GO
] [
PubMed
] [
Google
]
protein-DNA complex [
GO
] [
PubMed
] [
Google
]
positive regulation of RNA splicing [
GO
] [
PubMed
] [
Google
]
actinin binding [
GO
] [
PubMed
] [
Google
]
cell projection [
GO
] [
PubMed
] [
Google
]
camera-type eye development [
GO
] [
PubMed
] [
Google
]
ribonucleoprotein complex binding [
GO
] [
PubMed
] [
Google
]
negative regulation of apoptotic process [
GO
] [
PubMed
] [
Google
]
dendritic spine [
GO
] [
PubMed
] [
Google
]
axon terminus [
GO
] [
PubMed
] [
Google
]
positive regulation of low-density lipoprotein particle receptor biosynthetic process [
GO
] [
PubMed
] [
Google
]
positive regulation of transcription by RNA polymerase II [
GO
] [
PubMed
] [
Google
]
negative regulation of mRNA splicing, via spliceosome [
GO
] [
PubMed
] [
Google
]
positive regulation of receptor-mediated endocytosis [
GO
] [
PubMed
] [
Google
]
thymus development [
GO
] [
PubMed
] [
Google
]
positive regulation of synaptic transmission [
GO
] [
PubMed
] [
Google
]
ATPase binding [
GO
] [
PubMed
] [
Google
]
positive regulation of dendritic spine development [
GO
] [
PubMed
] [
Google
]
extracellular exosome [
GO
] [
PubMed
] [
Google
]
catalytic step 2 spliceosome [
GO
] [
PubMed
] [
Google
]
cellular response to amino acid stimulus [
GO
] [
PubMed
] [
Google
]
cellular response to glucose stimulus [
GO
] [
PubMed
] [
Google
]
regulation of lipid transport by positive regulation of transcription from RNA polymerase II promoter [
GO
] [
PubMed
] [
Google
]
cellular response to rapamycin [
GO
] [
PubMed
] [
Google
]
positive regulation of synapse maturation [
GO
] [
PubMed
] [
Google
]
positive regulation of long-term synaptic potentiation [
GO
] [
PubMed
] [
Google
]
response to salt [
GO
] [
PubMed
] [
Google
]
regulation of intrinsic apoptotic signaling pathway in response to DNA damage by p53 class mediator [
GO
] [
PubMed
] [
Google
]
positive regulation of dendrite extension [
GO
] [
PubMed
] [
Google
]
cellular response to forskolin [
GO
] [
PubMed
] [
Google
]
mRNA CDS binding [
GO
] [
PubMed
] [
Google
]
C-rich single-stranded DNA binding [
GO
] [
PubMed
] [
Google
]
positive regulation of protein localization to cell surface [
GO
] [
PubMed
] [
Google
]
negative regulation of branching morphogenesis of a nerve [
GO
] [
PubMed
] [
Google
]