All terms in GO

Label Id Description
negative regulation of post-transcriptional gene silencing by RNA GO_1900369
Any process that stops, prevents or reduces the frequency, rate or extent of post-transcriptional gene silencing by RNA.
positive regulation of ribosomal protein gene transcription by RNA polymerase II GO_0060963
Any process that increases the frequency, rate or extent of the synthesis of RNA from ribosomal protein genes mediated by RNA polymerase II.
protein-DNA covalent cross-linking via peptidyl-tyrosine GO_0045327
The formation of a covalent cross-link between DNA and a peptidyl-tyrosine residue.
protein-DNA covalent cross-linking GO_0018142
The formation of a covalent cross-link between DNA and a protein.
obsolete regulation of gene silencing GO_0060968
OBSOLETE. Any process that modulates the rate, frequency, or extent of gene silencing, the transcriptional or post-transcriptional process carried out at the cellular level that results in long-term gene inactivation.
cytochrome P450 4A1-heme linkage GO_0045328
The covalent linkage of heme to cytochrome P450 4A1 via hydroxyheme-L-glutamyl ester.
protein-heme linkage GO_0017003
The covalent linkage of heme and a protein.
obsolete negative regulation of gene silencing GO_0060969
OBSOLETE. Any process that decreases the rate, frequency, or extent of gene silencing, the transcriptional or post-transcriptional process carried out at the cellular level that results in long-term gene inactivation.
carnitine biosynthetic process GO_0045329
The chemical reactions and pathways resulting in the formation of carnitine (hydroxy-trimethyl aminobutyric acid), a compound that participates in the transfer of acyl groups across the inner mitochondrial membrane.
chloroplast proton-transporting ATP synthase complex GO_0045320
A proton-transporting ATP synthase complex found in the chloroplast thylakoid membrane; it catalyzes the phosphorylation of ADP to ATP during photo-phosphorylation.
proton-transporting ATP synthase complex GO_0045259
A proton-transporting two-sector ATPase complex that catalyzes the phosphorylation of ADP to ATP during oxidative phosphorylation. The complex comprises a membrane sector (F0) that carries out proton transport and a cytoplasmic compartment sector (F1) that catalyzes ATP synthesis by a rotational mechanism; the extramembrane sector (containing 3 a and 3 b subunits) is connected via the d-subunit to the membrane sector by several smaller subunits. Within this complex, the g and e subunits and the 9-12 c subunits rotate by consecutive 120 degree angles and perform parts of ATP synthesis. This movement is driven by the hydrogen ion electrochemical potential gradient.
leukocyte activation GO_0045321
A change in morphology and behavior of a leukocyte resulting from exposure to a specific antigen, mitogen, cytokine, cellular ligand, or soluble factor.
unmethylated CpG binding GO_0045322
Binding to uan nmethylated CpG motif. Unmethylated CpG dinucleotides are often associated with gene promoters.
interleukin-1 receptor complex GO_0045323
A protein complex that binds interleukin-1; comprises an alpha and a beta subunit.
late endosome to vacuole transport GO_0045324
The directed movement of substances from late endosomes to the vacuole. In yeast, after transport to the prevacuolar compartment, endocytic content is delivered to the late endosome and on to the vacuole. This pathway is analogous to endosome to lysosome transport.
vacuolar transport GO_0007034
The directed movement of substances into, out of or within a vacuole.
peptidyl-tryptophan hydroxylation GO_0045325
The hydroxylation of peptidyl-tryptophan, to form peptidyl-L-3-hydroxytryptophan.
peptidyl-tryptophan modification GO_0018211
The chemical alteration of a tryptophan residue in a peptide.
protein-DNA covalent cross-linking via the 3'-end to peptidyl-tyrosine GO_0045326
The formation of a covalent cross-link between DNA and a peptidyl-tyrosine residue by the formation of O4'-(phospho-3'-DNA)-L-tyrosine.
deltoid tuberosity development GO_0035993
The process whose specific outcome is the progression of the deltoid tuberosity over time, from its formation to the mature structure. The deltoid tuberosity is the region on the shaft of the humerus to which the deltoid muscle attaches. The deltoid tuberosity develops through endochondral ossification in a two-phase process; an initiating tendon-dependent phase, and a muscle-dependent growth phase.