All terms in GO

Label Id Description
N',N'',N'''-triacetylfusarinine C catabolic process GO_1900550
The chemical reactions and pathways resulting in the breakdown of N',N'',N'''-triacetylfusarinine C.
fucose:proton symporter activity GO_0015535
Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: fucose(out) + H+(out) = fucose(in) + H+(in).
fucose transmembrane transporter activity GO_0015150
Enables the transfer of fucose from one side of a membrane to the other. Fucose is 6-deoxygalactose and has two enantiomers, D-fucose and L-fucose.
modulation by virus of host molecular function GO_0039506
The process in which a virus effects a change in the function of a host protein via a direct interaction.
modulation by symbiont of host molecular function GO_0052055
The process in which an organism effects a change in the function of a host protein via a direct interaction. The host is defined as the larger of the organisms involved in a symbiotic interaction.
N',N'',N'''-triacetylfusarinine C biosynthetic process GO_1900551
The chemical reactions and pathways resulting in the formation of N',N'',N'''-triacetylfusarinine C.
GO_0015536 GO_0015536
negative regulation by symbiont of host catalytic activity GO_0052053
Any process in which an organism stops, prevents, or reduces the frequency, rate or extent of host enzyme activity. The host is defined as the larger of the organisms involved in a symbiotic interaction.
asperfuranone metabolic process GO_1900552
The chemical reactions and pathways involving asperfuranone.
shikimate:proton symporter activity GO_0015533
Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: shikimate(out) + H+(out) = shikimate(in) + H+(in).
shikimate transmembrane transporter activity GO_0015530
Enables the transfer of shikimate from one side of a membrane to the other. Shikimate is an important intermediate in the biosynthesis of aromatic amino acids.
asperfuranone catabolic process GO_1900553
The chemical reactions and pathways resulting in the breakdown of asperfuranone.
obsolete proline/glycine/betaine:hydrogen/sodium symporter activity GO_0015534
OBSOLETE. Catalysis of the reaction: (proline, glycine or betaine)(out) + (H+ or Na+)(out) = (proline, glycine or betaine)(in) + (H+ or Na+)(in).
suppression by virus of host type I interferon production GO_0039501
Any viral process that results in the inhibition of host cell type I interferon production. Type I interferons include the interferon-alpha, beta, delta, episilon, zeta, kappa, tau, and omega gene families.
suppression by virus of host cytokine production GO_0046775
Any viral process that results in the inhibition of host cell cytokine production.
negative regulation of type I interferon production GO_0032480
Any process that stops, prevents, or reduces the frequency, rate, or extent of type I interferon production. Type I interferons include the interferon-alpha, beta, delta, episilon, zeta, kappa, tau, and omega gene families.
asperfuranone biosynthetic process GO_1900554
The chemical reactions and pathways resulting in the formation of asperfuranone.
citrate:proton symporter activity GO_0015531
Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: citrate(out) + H+(out) = citrate(in) + H+(in).
suppression by virus of host type I interferon-mediated signaling pathway GO_0039502
Any process in which a virus stops, prevents, or reduces the frequency, rate or extent of type I interferon-mediated signaling in the host organism. Type I interferons include the interferon-alpha, beta, delta, episilon, zeta, kappa, tau, and omega gene families.
suppression by symbiont of host transmembrane receptor-mediated signal transduction GO_0075114
Any process in which the symbiont stops, prevents, or reduces the frequency, rate or extent of transmembrane receptor-mediated signal transduction in the host organism. The host is defined as the larger of the organisms involved in a symbiotic interaction.