All terms in GO
| Label | Id | Description |
|---|---|---|
| plasma membrane proton-transporting ATP synthase, catalytic core | GO_0045268 | [The hexamer that possesses the catalytic activity of the plasma membrane hydrogen-transporting ATP synthase. Examples of this component are found in Bacterial species.] |
| plasma membrane proton-transporting ATP synthase complex, catalytic core F(1) | GO_0045262 | [The catalytic sector of the plasma membrane hydrogen-transporting ATP synthase; it comprises the catalytic core and central stalk, and is peripherally associated with the plasma membrane when the entire ATP synthase is assembled. Examples of this component are found in Bacterial species.] |
| proton-transporting ATP synthase, central stalk | GO_0045269 | [One of two stalks that connect the catalytic core of the hydrogen-transporting ATP synthase to the membrane-associated Fo proteins; rotates within the catalytic core during catalysis.] |
| proton-transporting two-sector ATPase complex, catalytic domain | GO_0033178 | [A protein complex that forms part of a proton-transporting two-sector ATPase complex and catalyzes ATP hydrolysis or synthesis. The catalytic domain (F1, V1, or A1) comprises a hexameric catalytic core and a central stalk, and is peripherally associated with the membrane when the two-sector ATPase is assembled.] |
| proton-transporting two-sector ATPase complex, proton-transporting domain | GO_0033177 | [A protein complex that forms part of a proton-transporting two-sector ATPase complex and carries out proton transport across a membrane. The proton-transporting domain (F0, V0, or A0) includes integral and peripheral membrane proteins.] |
| anterior semicircular canal development | GO_0060873 | [The progession of the anterior semicircular canal from its initial formation to the mature structure.] |
| cell wall disassembly involved in floral organ abscission | GO_0060870 | [A cellular process that results in the breakdown of the cell wall that contributes to the process of floral organ abscission.] |
| GO_0060871 | GO_0060871 | |
| semicircular canal formation | GO_0060876 | [The developmental process pertaining to the initial formation of the semicircular canal from the otic vesicle. This process begins with the regionalization of the vesicle that specifies the area where the vesicles will form and continues through the process of fusion which forms the initial tubes.] |
| tube formation | GO_0035148 | [Creation of the central hole of a tube in an anatomical structure through which gases and/or liquids flow.] |
| regionalization involved in semicircular canal formation | GO_0060877 | [The pattern specification process that results in the subdivision of the otic epithelium in space to define an area or volume in which cells will differentiate to give rise to the semicircular canals.] |
| posterior semicircular canal development | GO_0060874 | [The progession of the posterior semicircular canal from its initial formation to the mature structure.] |
| lateral semicircular canal development | GO_0060875 | [The progession of the lateral semicircular canal from its initial formation to the mature structure.] |
| pouch outgrowth involved in semicircular canal formation | GO_0060878 | [The morphogenetic process in which an epithelial sheet bends along a linear axis and gives rise to a pouch that will form a semicircular canal.] |
| tube closure | GO_0060606 | [Creation of the central hole of a tube in an anatomical structure by sealing the edges of an epithelial fold.] |
| phosphatase complex | GO_1903293 | [A protein complex which is capable of phosphatase activity.] |
| GO_0045255 | GO_0045255 | |
| GO_0045256 | GO_0045256 | |
| succinate dehydrogenase complex (ubiquinone) | GO_0045257 | [The enzyme that catalyzes the oxidation of succinate and ubiquinone to fumarate and ubiquinol; involved in aerobic respiration, repressed in anaerobic respiration.] |
| succinate dehydrogenase complex | GO_0045281 | [A multimeric complex which consists of flavoprotein (subunit A ; InterPro:IPR003952), iron-sulfur protein (subunit B) and membrane-bound cytochrome b560 (subunit C; InterPro:IPR000701). In some Archaea, the membrane-bound subunits (C or C and D) do not necessarily contain heme. Membrane-bound subunits can bind or react with quinones.] |