All terms in GO
| Label | Id | Description |
|---|---|---|
| baruol synthase activity | GO_0080011 |
Catalysis of the reaction: (S)-2,3-epoxysqualene = baruol. Baruol is also known as D:B-Friedo-Baccharan-5,21-dien-3-ol.
|
| nucleocytoplasmic transport complex | GO_0031074 |
Any complex that acts to move proteins or RNAs into or out of the nucleus through nuclear pores.
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| sulfate ion homeostasis | GO_0055063 |
Any process involved in the maintenance of an internal steady state of sulfate ions within an organism or cell.
|
| divalent inorganic anion homeostasis | GO_0072505 |
Any process involved in the maintenance of an internal steady state of divalent inorganic anions within an organism or cell.
|
| GO_0031075 | GO_0031075 | |
| chloride ion homeostasis | GO_0055064 |
Any process involved in the maintenance of an internal steady state of chloride ions within an organism or cell.
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| monovalent inorganic anion homeostasis | GO_0055083 |
Any process involved in the maintenance of an internal steady state of monovalent inorganic anions within an organism or cell.
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| embryonic camera-type eye development | GO_0031076 |
The process occurring during the embryonic phase whose specific outcome is the progression of the eye over time, from its formation to the mature structure.
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| camera-type eye development | GO_0043010 |
The process whose specific outcome is the progression of the camera-type eye over time, from its formation to the mature structure. The camera-type eye is an organ of sight that receives light through an aperture and focuses it through a lens, projecting it on a photoreceptor field.
|
| obsolete di-, tri-valent inorganic anion homeostasis | GO_0055061 |
OBSOLETE. Any process involved in the maintenance of an internal steady state of divalent or trivalent inorganic anions within an organism or cell.
|
| post-embryonic camera-type eye development | GO_0031077 |
The process occurring during the post-embryonic phase whose specific outcome is the progression of the camera-type eye over time, from its formation to the mature structure.
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| phosphate ion homeostasis | GO_0055062 |
Any process involved in the maintenance of an internal steady state of phosphate ions within an organism or cell.
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| trivalent inorganic anion homeostasis | GO_0072506 |
Any process involved in the maintenance of an internal steady state of trivalent inorganic anions within an organism or cell.
|
| histone deacetylase activity (H3-K14 specific) | GO_0031078 |
Catalysis of the reaction: histone H3 N6-acetyl-L-lysine (position 14) + H2O = histone H3 L-lysine (position 14) + acetate. This reaction represents the removal of an acetyl group from lysine at position 14 of the histone H3 protein.
|
| obsolete picornain 3C activity | GO_0031079 |
OBSOLETE. Catalysis of the selective cleavage of GlnGly bond in the poliovirus polyprotein. In other picornavirus reactions Glu may be substituted for Gln, and Ser or Thr for Gly.
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| asymmetric neuroblast division resulting in ganglion mother cell formation | GO_0055060 |
Any process resulting in the physical partitioning and separation of a neuroblast into a neuroblast and a ganglion mother cell.
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| zinc ion homeostasis | GO_0055069 |
Any process involved in the maintenance of an internal steady state of zinc ions within an organism or cell.
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| transition metal ion homeostasis | GO_0055076 |
Any process involved in the maintenance of an internal steady state of transition metal ions within an organism or cell. A transition metal is an element whose atom has an incomplete d-subshell of extranuclear electrons, or which gives rise to a cation or cations with an incomplete d-subshell. Transition metals often have more than one valency state. Biologically relevant transition metals include vanadium, manganese, iron, copper, cobalt, nickel, molybdenum and silver.
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| inorganic ion homeostasis | GO_0098771 |
Any process involved in the maintenance of an internal steady state of inorganic ions within an organism or cell.
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| cysteine desulfurase activity | GO_0031071 |
Catalysis of the reaction: L-cysteine + [enzyme]-cysteine = L-alanine + [enzyme]-S-sulfanylcysteine.
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