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Catalysis of the transfer of S-adenosylmethionine from one side of a membrane to the other. S-adenosylmethionine is S-(5'-adenosyl)-L-methionine, an important intermediate in one-carbon metabolism. Catalysis of the transfer of L-cystine from one side of a membrane to the other. Catalysis of the transfer of amino acids from one side of a membrane to the other. Amino acids are organic molecules that contain an amino group and a carboxyl group. Catalysis of the transfer of carboxylic acids from one side of the membrane to the other. Carboxylic acids are organic acids containing one or more carboxyl (COOH) groups or anions (COO-). Catalysis of the transfer of S-methylmethionine from one side of a membrane to the other. Catalysis of the transfer of sulfur amino acids from one side of a membrane to the other. Sulphur amino acids contain sulfur in the form of cystine, methionine or their derivatives. Catalysis of the transfer of amines, including polyamines, from one side of the membrane to the other. Amines are organic compounds that are weakly basic in character and contain an amino (-NH2) or substituted amino group. Catalysis of the transfer of methionine from one side of a membrane to the other. Catalysis of the transfer of cysteine from one side of the membrane to the other.

View Gene Ontology (GO) Term

GO TERM SUMMARY

Name: sulfur amino acid transmembrane transporter activity
Acc: GO:0000099
Aspect: Molecular Function
Desc: Catalysis of the transfer of sulfur amino acids from one side of a membrane to the other. Sulphur amino acids contain sulfur in the form of cystine, methionine or their derivatives.
Synonyms:
  • sulfur amino acid transporter activity
  • sulphur amino acid transmembrane transporter activity
  • sulphur amino acid transporter activity
Proteins in PDR annotated with:
   This term: 0
   Term or descendants: 73 [Search]


[geneontology.org]
INTERACTIVE GO GRAPH

GO:0000099 - sulfur amino acid transmembrane transporter activity (interactive image map)

YRC Informatics Platform - Version 3.0
Created and Maintained by: Michael Riffle