All terms in GO
| Label | Id | Description |
|---|---|---|
| ribonuclease U2 activity | GO_0033899 |
Catalysis of the two-stage endonucleolytic cleavage to nucleoside 3'-phosphates and 3'-phosphooligonucleotides ending in Ap or Gp with 2',3'-cyclic phosphate intermediates.
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| ABC-type bacteriocin transporter activity | GO_0043214 |
Enables the transfer of a bacteriocin from one side of a membrane to the other according to the reaction: ATP + H2O = ADP + phosphate.
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| bacteriocin transport | GO_0043213 |
The directed movement of a bacteriocin into, out of or within a cell, or between cells, by means of some agent such as a transporter or pore. Bacteriocins are a group of antibiotics produced by bacteria and are encoded by a group of naturally occurring plasmids, e.g. Col E1. Bacteriocins are toxic to bacteria closely related to the bacteriocin producing strain.
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| Bacillus subtilis ribonuclease activity | GO_0033898 |
Catalysis of the endonucleolytic cleavage to 2',3'-cyclic nucleotides.
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| carbohydrate-exporting ABC transporter activity | GO_0043212 |
Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: ATP + H2O + carbohydrate(in) -> ADP + phosphate + carbohydrate(out).
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| molybdenum incorporation into metallo-sulfur cluster | GO_0018289 |
The incorporation of molybdenum into a metallo-sulfur cluster.
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| iron incorporation into iron-sulfur cluster via tetrakis-L-cysteinyl tetrairon tetrasulfide | GO_0018288 |
The incorporation of iron into a 4Fe-4S iron-sulfur cluster via tetrakis-L-cysteinyl tetrairon tetrasulfide.
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| iron incorporation into iron-sulfur cluster via tris-L-cysteinyl triiron tetrasulfide | GO_0018287 |
The incorporation of iron into a 3Fe-4S iron-sulfur cluster via tris-L-cysteinyl triiron tetrasulfide.
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| obsolete iron incorporation into iron-sulfur cluster via hexakis-L-cysteinyl triiron trisulfide | GO_0018286 |
OBSOLETE. The incorporation of iron into a 3Fe-3S iron-sulfur cluster via hexakis-L-cysteinyl triiron trisulfide. The three-iron three-sulfur cluster probably does not exist except as an intermediate form.
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| iron incorporation into iron-sulfur cluster via tetrakis-L-cysteinyl diiron disulfide | GO_0018285 |
The incorporation of iron into a 2Fe-2S iron-sulfur cluster via tetrakis-L-cysteinyl diiron disulfide.
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| iron incorporation into protein via tetrakis-L-cysteinyl iron | GO_0018284 |
The incorporation of iron into a protein via tetrakis-L-cysteinyl iron (there is no exogenous sulfur, so this modification by itself does not produce an iron-sulfur protein).
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| protein-FAD linkage via S-(8alpha-FAD)-L-cysteine | GO_0018294 |
The formation of a protein-FAD linkage via S-(8-alpha-FAD)-L-cysteine.
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| protein-FAD linkage | GO_0018293 |
The formation of a linkage between a protein amino acid and flavin-adenine dinucleotide (FAD).
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| molybdenum incorporation via L-cysteinyl molybdopterin | GO_0018292 |
The incorporation of molybdenum into a protein via L-cysteinyl molybdopterin.
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| molybdenum incorporation into iron-sulfur cluster | GO_0018291 |
The incorporation of molybdenum into an iron-sulfur cluster.
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| iron and molybdenum incorporation into iron-molybdenum-sulfur cluster via L-cysteinyl homocitryl molybdenum-heptairon-nonasulfide | GO_0018290 |
The incorporation of iron and molybdenum into a Mo-7Fe-8S iron-molybdenum-sulfur cluster via L-cysteinyl homocitryl molybdenum-heptairon-nonasulfide, found in nitrogenase.
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| megasome | GO_0043246 |
Large, cysteine proteinase rich lysosomes, often found in the amastigote (an intracytoplasmic, nonflagellated form of the parasite) stage of Leishmania species belonging to the mexicana complex.
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| extraorganismal space | GO_0043245 |
The environmental space outside of an organism; this may be a host organism in the case of parasitic and symbiotic organisms.
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| GO_0043241 | GO_0043241 | |
| Fanconi anaemia nuclear complex | GO_0043240 |
A protein complex composed of the Fanconi anaemia (FA) proteins including A, C, E, G and F (FANCA-F). Functions in the activation of the downstream protein FANCD2 by monoubiquitylation, and is essential for protection against chromosome breakage.
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