All terms in GO

Label Id Description
posterior cell cortex GO_0061803
The region that lies just beneath the plasma membrane in the part of a cell that is closest to the posterior as defined by the developing, or existing, anterior/posterior axis.
anterior cell cortex GO_0061802
The region that lies just beneath the plasma membrane in the part of a cell that is closest to the anterior as defined by the developing, or existing, anterior/posterior axis.
NAD+ nucleotidase, cyclic ADP-ribose generating GO_0061809
Catalysis of the reaction: NAD+ + H2O = nicotinamide + ADP-ribose that proceeds in a stepwise fashion by ADP-ribosyl cyclase activity followed by cyclic ADP-ribose hydrolase activity.
negative regulation of DNA recombination at centromere GO_0061808
Any process that stops, prevents, or reduces the frequency, rate or extent of genetic recombination at the centromere.
regulation of DNA recombination at centromere GO_0061806
Any process that modulates the frequency, rate or extent of DNA recombination within centromeric DNA.
positive regulation of DNA recombination at centromere GO_0061807
Any process that activates or increases the frequency, rate or extent of DNA recombination at the centromere.
oxidoreductase activity, acting on CH or CH2 groups, disulfide as acceptor GO_0016728
Catalysis of an oxidation-reduction (redox) reaction in which a CH2 group acts as a hydrogen or electron donor and reduces a disulfide group.
C-rich strand telomeric DNA binding GO_0061730
Binding to C-rich, single-stranded, telomere-associated DNA.
DNM1L-mediated stimulation of mitophagy in response to mitochondrial depolarization GO_0061735
A positive regulation of the macromitophagy pathway that is triggered by mitochondrial depolarization and requires the function of a DNM1L-family molecule.
parkin-mediated stimulation of mitophagy in response to mitochondrial depolarization GO_0061734
A positive regulation of the macromitophagy pathway that is triggered by mitochondrial depolarization and requires the function of a parkin-family molecule.
mitochondrial acetyl-CoA biosynthetic process from pyruvate GO_0061732
The chemical reactions and pathways resulting in the formation of acetyl-CoA from pyruvate in the mitochondrion. The process begins with the transport of pyruvate from the cytosol to the mitochondrion where it is subsequently decarboxylated to form acetyl-CoA.
protein lipidation involved in autophagosome assembly GO_0061739
The protein lipidation process by which phosphatidylethanolamine is conjugated to a protein of the ATG8 family, leading to membrane insertion of the protein as a step in autophagosome assembly.
late endosomal microautophagy GO_0061738
The autophagy process by which cytosolic proteins targeted for degradation are tagged with a chaperone and are directly transferred into and degraded in a late endosomal compartment.
leukotriene signaling pathway GO_0061737
A G protein-coupled receptor signaling pathway initiated by leukotriene binding to its receptor on the surface of a target cell, and ending with the regulation of a downstream cellular process.
engulfment of target by autophagosome GO_0061736
The membrane invagination process by which an autophagosomal membrane surrounds an object that will be degraded by macroautophagy.
chaperone-mediated autophagy translocation complex GO_0061742
A lysosomal membrane protein complex that enables the translocation of a target protein across the lysosomal membrane as part of chaperone-mediated autophagy.
obsolete chaperone-mediated protein transport involved in chaperone-mediated autophagy GO_0061741
OBSOLETE. The chaperone-mediated protein transport process in which a protein that is bound to a chaperone and a lysosomal receptor is unfolded and transported into the lysosome as part of chaperone-mediated autophagy.
protein targeting to lysosome involved in chaperone-mediated autophagy GO_0061740
The targeting of a protein to the lysosome process in which an input protein binds to a chaperone and subsequently to a lysosomal receptor.
protein targeting to lysosome GO_0006622
The process of directing proteins towards the lysosome using signals contained within the protein.
obsolete single-stranded DNA-dependent GTPase activity GO_0061746
OBSOLETE. Catalysis of the reaction: GTP + H2O = GDP + phosphate; this reaction requires the presence of single-stranded DNA, and it drives another reaction.