All terms in GO
| Label | Id | Description |
|---|---|---|
| calcium activated phosphatidylcholine scrambling | GO_0061590 |
The movement of a population of phosphatidylcholine molecules from one leaflet of the plasma membrane bilayer to the opposite leaflet as a result of a calcium stimulus.
|
| response to hydrogen sulfide | GO_1904880 |
Any process that results in a change in state or activity of a cell or an organism (in terms of movement, secretion, enzyme production, gene expression, etc.) as a result of a hydrogen sulfide stimulus.
|
| 6-deoxy-6-sulfofructose-1-phosphate aldolase activity | GO_0061595 |
Catalysis of the reaction 6-deoxy-6-sulfofructose-1-phosphate = 3-sulfolactaldehyde + dihydroxyacetone phosphate.
|
| 6-deoxy-6-sulfofructose kinase activity | GO_0061594 |
Catalysis of the reaction 6-deoxy-6-sulfofructose + ATP = 6-deoxy-6-sulfofructose-1-phosphate + ADP.
|
| regulation of telomerase catalytic core complex assembly | GO_1904882 |
Any process that modulates the frequency, rate or extent of telomerase catalytic core complex assembly.
|
| sulfoquinovose isomerase activity | GO_0061593 |
Catalysis of the reaction sulfoquinovose = 6-deoxy-6-sulfofructose.
|
| cellular response to hydrogen sulfide | GO_1904881 |
Any process that results in a change in state or activity of a cell (in terms of movement, secretion, enzyme production, gene expression, etc.) as a result of a hydrogen sulfide stimulus.
|
| phosphatidylserine exposure on osteoblast involved in bone mineralization | GO_0061592 |
A phospholipid scrambling process that results in the appearance of phosphatidylserine on the surface of osteoblasts, and contributes to bone mineralization.
|
| positive regulation of telomerase catalytic core complex assembly | GO_1904884 |
Any process that activates or increases the frequency, rate or extent of telomerase catalytic core complex assembly.
|
| negative regulation of telomerase catalytic core complex assembly | GO_1904883 |
Any process that stops, prevents or reduces the frequency, rate or extent of telomerase catalytic core complex assembly.
|
| beta-catenin destruction complex disassembly | GO_1904886 |
The disaggregation of a beta-catenin destruction complex into its constituent components.
|
| beta-catenin destruction complex assembly | GO_1904885 |
The aggregation, arrangement and bonding together of a set of components to form a beta-catenin destruction complex.
|
| cranial skeletal system development | GO_1904888 |
The process whose specific outcome is the progression of a cranial skeletal system over time, from its formation to the mature structure. The cranial skeletal system is the skeletal subdivision of the head, and includes the skull (cranium plus mandible), pharyngeal and/or hyoid apparatus.
|
| Wnt signalosome assembly | GO_1904887 |
The aggregation, arrangement and bonding together of a set of components to form a Wnt signalosome.
|
| regulation of excitatory synapse assembly | GO_1904889 |
Any process that modulates the frequency, rate or extent of excitatory synapse assembly.
|
| positive regulation of excitatory synapse assembly | GO_1904891 |
Any process that activates or increases the frequency, rate or extent of excitatory synapse assembly.
|
| negative regulation of excitatory synapse assembly | GO_1904890 |
Any process that stops, prevents or reduces the frequency, rate or extent of excitatory synapse assembly.
|
| host-mediated regulation of oral microbiota composition | GO_0120332 |
The biological process involved in maintaining the steady-state number of cells within a population of free-living cells, such as the bacteria, in the mouth.
|
| endothelial tube formation | GO_0120331 |
The developmental process pertaining to the initial formation of an endothelial tube.
|
| rixosome complex | GO_0120330 |
A conserved RNA endonuclease complex required for spreading and epigenetic inheritance of heterochromatin. The rixosome contains six unique subunits: three structural subunits (Crb3, Rix1, and Ipi1) which form the core of the complex, and three catalytic subunits (the endonuclease Las1, the polynucleotide kinase Grc3, and the AAA-type ATPase Mdn1), which are involved in the processing of ribosomal RNA precursors. All subunits are essential for viability and are conserved from yeast to mammals, including humans.
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