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rhamnose transmembrane transporter activity
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GO_0015153 |
[Enables the transfer of rhamnose from one side of a membrane to the other. Rhamnose occurs commonly as a compound of plant glycosides, in polysaccharides of gums and mucilages, and in bacterial polysaccharides. It is also a component of some plant cell wall polysaccharides and frequently acts as the sugar components of flavonoids.] |
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obsolete modulation by virus of host autophagy
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GO_0039519 |
[OBSOLETE. Any process in which a virus effect a change in the frequency, rate or extent of autophagy in the host.] |
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symbiont-mediated suppression of host cytoplasmic pattern recognition receptor signaling pathway via inhibition of IRF3 activity
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GO_0039548 |
[A process in which a symbiont interferes with, inhibits or disrupts a cytoplasmic pattern recognition receptor signaling pathway in a host organism by reducing the activity of host IRF3 (interferon regulatory factor-3). IRF3 is a transcription factor in the RIG-I/MDA-5 signaling pathway. Viral infection triggers phosphorylation of cytoplasmic IRF3, which allows IRF3 to form a homodimer, migrate to the nucleus, and activate transcription of IFN-alpha and IFN-beta genes.] |
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violaceol II biosynthetic process
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GO_1900593 |
[The chemical reactions and pathways resulting in the formation of violaceol II.] |
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obsolete suppression by virus of host IRF3 activity by inhibition of IRF3 phosphorylation
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GO_0039549 |
[OBSOLETE. Any process in which a virus stops, prevents, or reduces the rate or extent of the phosphorylation of IRF3 (interferon regulatory factor-3), thereby inhibiting IRF3 activation. In response to signaling from RIG-1/MDA-5 receptors, IRF3 is phosphorylated on multiple serine and threonine residues; phosphorylation results in the cytoplasm-to-nucleus translocation of IRF3, DNA binding, and increased transcriptional activation of interferon-encoding genes.] |
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obsolete (+)-kotanin metabolic process
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GO_1900594 |
[OBSOLETE. The chemical reactions and pathways involving (+)-kotanin.] |
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GO_0015579
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GO_0015579 |
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(+)-kotanin catabolic process
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GO_1900595 |
[The chemical reactions and pathways resulting in the breakdown of (+)-kotanin.] |
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(+)-kotanin biosynthetic process
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GO_1900596 |
[The chemical reactions and pathways resulting in the formation of (+)-kotanin.] |
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obsolete suppression by virus of host RIG-I activity by RIG-I proteolysis
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GO_0039544 |
[OBSOLETE. The chemical reactions and pathways performed by a virus resulting in the hydrolysis of the host RIG-I protein (also known as DDX58) by cleavage of peptide bonds, thereby inhibiting RIG-I signal transduction.] |
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galactitol transmembrane transporter activity
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GO_0015577 |
[Enables the transfer of a galactitol from one side of a membrane to the other. Galactitol is the hexitol derived by the reduction of the aldehyde group of either D- or L-galactose.] |
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polyol transmembrane transporter activity
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GO_0015166 |
[Enables the transfer of a polyol from one side of a membrane to the other. A polyol is any polyhydric alcohol.] |
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obsolete demethylkotanin metabolic process
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GO_1900597 |
[OBSOLETE. The chemical reactions and pathways involving demethylkotanin.] |
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symbiont-mediated suppression of host cytoplasmic pattern recognition receptor signaling pathway via inhibition of MAVS activity
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GO_0039545 |
[A process in which a symbiont interferes with, inhibits or disrupts a cytoplasmic pattern recognition receptor signaling pathway in a host organism by reducing the activity of host MAVS (mitochondrial antiviral signaling protein). MAVS is a signal transducer that lies downstream of the viral RNA receptors MDA-5 and RIG-I to coordinate host innate immune responses.] |
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demethylkotanin catabolic process
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GO_1900598 |
[The chemical reactions and pathways resulting in the breakdown of demethylkotanin.] |
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obsolete suppression by virus of host MAVS activity by MAVS proteolysis
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GO_0039546 |
[OBSOLETE. The chemical reactions and pathways performed by a virus resulting in the hydrolysis of the host MAVS (mitochondrial inhibitor of viral signaling) protein by cleavage of peptide bonds, thereby inhibiting the host innate immune response. For example, MAVS harbors a C-terminal transmembrane domain that targets it to the mitochondrial outer membrane; cleavage within this domain removes MAVS from the membrane, thus preventing it from signaling.] |
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mannitol transmembrane transporter activity
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GO_0015575 |
[Enables the transfer of mannitol from one side of a membrane to the other. Mannitol is the alditol derived from D-mannose by reduction of the aldehyde group.] |
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demethylkotanin biosynthetic process
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GO_1900599 |
[The chemical reactions and pathways resulting in the formation of demethylkotanin.] |
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GO_0039547
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GO_0039547 |
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sorbitol transmembrane transporter activity
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GO_0015576 |
[Enables the transfer of sorbitol from one side of a membrane to the other. Sorbitol, also known as glucitol, is the hexitol derived by the reduction of the aldehyde group of glucose.] |