All terms in GO

Label Id Description
CTP catabolic process GO_0006254
The chemical reactions and pathways resulting in the breakdown of CTP, cytidine 5'-triphosphate.
obsolete UDP reduction GO_0006255
OBSOLETE. (Was not defined before being made obsolete).
UDP catabolic process GO_0006256
The chemical reactions and pathways resulting in the breakdown of UDP, uridine (5'-)diphosphate.
dUDP catabolic process GO_0006257
The chemical reactions and pathways resulting in the breakdown of dUDP, deoxyuridine (5'-)diphosphate.
UDP-glucose catabolic process GO_0006258
The chemical reactions and pathways resulting in the breakdown of UDP-glucose, uridinediphosphoglucose, a substance composed of glucose in glycosidic linkage with uridine diphosphate.
hypothalamus gonadotrophin-releasing hormone neuron development GO_0021888
The process whose specific outcome is the progression of a hypothalamus gonadotrophin-releasing hormone neuron over time, from initial commitment of its fate, to the fully functional differentiated cell.
nucleic acid metabolic process GO_0090304
Any cellular metabolic process involving nucleic acids.
olfactory bulb interneuron differentiation GO_0021889
The process in which a neuroblast acquires specialized features of an interneuron residing in the olfactory bulb.
hypothalamus gonadotrophin-releasing hormone neuron differentiation GO_0021886
The process in which a relatively unspecialized cell acquires specialized features of a neuron located in the hypothalamus. These neurons release gonadotrophin-releasing hormone as a neural transmitter.
negative regulation of nuclear division GO_0051784
Any process that stops, prevents, or reduces the frequency, rate or extent of nuclear division, the partitioning of the nucleus and its genetic information.
regulation of meiotic nuclear division GO_0040020
Any process that modulates the frequency, rate or extent of meiotic nuclear division, the process in which the nucleus of a diploid cell divides twice forming four haploid cells, one or more of which usually function as gametes.
hypothalamus gonadotrophin-releasing hormone neuron fate commitment GO_0021887
The process in which the developmental fate of a cell becomes restricted such that it will develop into a hypothalamus neuron that releases gonadotrophin-releasing hormone.
regulation of membrane potential GO_0042391
Any process that modulates the establishment or extent of a membrane potential, the electric potential existing across any membrane arising from charges in the membrane itself and from the charges present in the media on either side of the membrane.
Notch signaling pathway involved in forebrain neuron fate commitment GO_0021880
The series of molecular signals initiated by binding of an extracellular ligand to a Notch receptor on the surface of the target cell that contributes to the commitment of a neuroblast to a neuronal fate. The neuron will reside in the forebrain.
Wnt-activated signaling pathway involved in forebrain neuron fate commitment GO_0021881
The series of molecular signals initiated by binding of Wnt protein to a receptor on the surface of the target cell that contributes to the commitment of a neuroblast to aneuronal fate. The neuron will reside in the forebrain.
positive regulation of B cell activation GO_0050871
Any process that activates or increases the frequency, rate or extent of B cell activation.
forebrain cell migration GO_0021885
The orderly movement of a cell from one site to another at least one of which is located in the forebrain.
negative regulation of light-activated channel activity GO_0045831
Any process that stops, prevents, or reduces the frequency, rate or extent of light-activated channel activity.
obsolete regulation of transcription from RNA polymerase II promoter involved in forebrain neuron fate commitment GO_0021882
OBSOLETE. Any process that modulates the frequency, rate or extent of transcription from an RNA polymerase II promoter that contributes to the commitment of a neuroblast to a neuronal fate. The neuron will reside in the forebrain.
obsolete cell cycle arrest of committed forebrain neuronal progenitor cell GO_0021883
OBSOLETE. The process in which the cell cycle is halted during one of the normal phases (G1, S, G2, M) in a cell that has been committed to become a neuron that will reside in the forebrain.