All terms in GO

Label Id Description
poly-N-acetyllactosamine catabolic process GO_0030310 [The chemical reactions and pathways resulting in the breakdown of poly-N-acetyllactosamine, a carbohydrate composed of N-acetyllactosamine repeats (Gal-beta-1,4-GlcNAc-beta-1,3)n.]
poly-N-acetyllactosamine metabolic process GO_0030309 [The chemical reactions and pathways involving poly-N-acetyllactosamine, a carbohydrate composed of N-acetyllactosamine repeats (Gal-beta-1,4-GlcNAc-beta-1,3)n.]
obsolete glucose transmembrane transporter activity GO_0005355 [OBSOLETE. Enables the transfer of the hexose monosaccharide glucose from one side of a membrane to the other.]
poly-N-acetyllactosamine biosynthetic process GO_0030311 [The chemical reactions and pathways resulting in the formation of poly-N-acetyllactosamine, a carbohydrate composed of N-acetyllactosamine repeats (Gal-beta-1,4-GlcNAc-beta-1,3)n.]
D-glucose:proton symporter activity GO_0005356 [Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: D-glucose + H+ = D-glucose + H+. Symporter activity enables the active transport of a solute across a membrane by a mechanism whereby two or more species are transported together in the same direction in a tightly coupled process not directly linked to a form of energy other than chemiosmotic energy.]
obsolete constitutive glucose:proton symporter activity GO_0005357 [OBSOLETE. Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: glucose + H+ = glucose + H+. This activity is constitutive and therefore always present, regardless of demand. Symporter activity enables the active transport of a solute across a membrane by a mechanism whereby two or more species are transported together in the same direction in a tightly coupled process not directly linked to a form of energy other than chemiosmotic energy.]
high-affinity D-glucose:proton symporter activity GO_0005358 [Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: glucose + H+ = glucose + H+. This activity is constitutive and therefore always present, regardless of demand. Symporter activity enables the active transport of a solute across a membrane by a mechanism whereby two or more species are transported together in the same direction in a tightly coupled process not directly linked to a form of energy other than chemiosmotic energy. In high-affinity transport the transporter is able to bind the solute even if it is only present at very low concentrations.]
low-affinity D-glucose:proton symporter activity GO_0005359 [Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: glucose(out) + H(out)+ = glucose(in) + H(in)+. In low-affinity transport the transporter is able to bind the solute only if it is present at very high concentrations. Symporter activity enables the active transport of a solute across a membrane by a mechanism whereby two or more species are transported together in the same direction in a tightly coupled process not directly linked to a form of energy other than chemiosmotic energy.]
pteridine catabolic process GO_0019990 [The chemical reactions and pathways resulting in the breakdown of pteridine, pyrazino(2,3-dipyrimidine), the parent structure of pterins and the pteroyl group.]
septate junction assembly GO_0019991 [The assembly of a septate junction, an intercellular junction found in invertebrate epithelia that is characterized by a ladder like appearance in electron micrographs and thought to provide structural strength and to provide a barrier to diffusion of solutes through the intercellular space.]
diacylglycerol binding GO_0019992 [Binding to a diacylglycerol, a diester of glycerol and two fatty acids.]
cell envelope GO_0030313 [An envelope that surrounds a bacterial cell and includes the cytoplasmic membrane and everything external, encompassing the periplasmic space, cell wall, and outer membrane if present.]
junctional membrane complex GO_0030314 [Complex formed in muscle cells between the membrane of the sarcoplasmic reticulum and invaginations of the plasma membrane (T-tubules).]
T-tubule GO_0030315 [Invagination of the plasma membrane of a muscle cell that extends inward from the cell surface around each myofibril. The ends of T-tubules make contact with the sarcoplasmic reticulum membrane.]
osteoclast differentiation GO_0030316 [The process in which a relatively unspecialized monocyte acquires the specialized features of an osteoclast. An osteoclast is a specialized phagocytic cell associated with the absorption and removal of the mineralized matrix of bone tissue.]
flagellated sperm motility GO_0030317 [The directed, self-propelled movement of a cilium (aka flagellum) that contributes to the movement of a flagellated sperm.]
obsolete cellular di-, tri-valent inorganic anion homeostasis GO_0030319 [OBSOLETE. Any process involved in the maintenance of an internal steady state of divalent or trivalent inorganic anions at the level of a cell.]
insulin-responsive D-glucose:proton symporter activity GO_0005360 [Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: glucose(out) + H(out)+ = glucose(in) + H(in)+, in response to a stimulus by insulin. Symporter activity enables the active transport of a solute across a membrane by a mechanism whereby two or more species are transported together in the same direction in a tightly coupled process not directly linked to a form of energy other than chemiosmotic energy.]
GO_0005361 GO_0005361
low-affinity D-glucose:sodium symporter activity GO_0005362 [Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: D-glucose(out) + Na+(out) = D-glucose(in) + Na+(in). In low-affinity transport the transporter is able to bind the solute only if it is present at very high concentrations.]