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.
|