Domain Annotation: SCOP2 Classification SCOP2 Database Homepage

ChainsTypeFamily Name Domain Identifier Family IdentifierProvenance Source (Version)
ASCOP2 FamilySTM3548-like8087657 4002140 SCOP2 (2022-06-29)
ASCOP2 SuperfamilyClass I glutamine amidotransferase-like8087658 3001405 SCOP2 (2022-06-29)
BSCOP2B SuperfamilyClass I glutamine amidotransferase-like8087658 3001405 SCOP2B (2022-06-29)
CSCOP2B SuperfamilyClass I glutamine amidotransferase-like8087658 3001405 SCOP2B (2022-06-29)

Domain Annotation: ECOD Classification ECOD Database Homepage

ChainsFamily NameDomain Identifier ArchitecturePossible HomologyHomologyTopologyFamilyProvenance Source (Version)
AGATase1_likee3sozA1 A: a/b three-layered sandwichesX: Flavodoxin-likeH: Class I glutamine amidotransferase-likeT: Class I glutamine amidotransferase-likeF: GATase1_likeECOD (1.6)
BGATase1_likee3sozB1 A: a/b three-layered sandwichesX: Flavodoxin-likeH: Class I glutamine amidotransferase-likeT: Class I glutamine amidotransferase-likeF: GATase1_likeECOD (1.6)
CGATase1_likee3sozC1 A: a/b three-layered sandwichesX: Flavodoxin-likeH: Class I glutamine amidotransferase-likeT: Class I glutamine amidotransferase-likeF: GATase1_likeECOD (1.6)

Domain Annotation: CATH CATH Database Homepage

Protein Family Annotation Pfam Database Homepage

ChainsAccessionNameDescriptionCommentsSource
A, B, C
PF07090Putative glutamine amidotransferase (GATase1_like)Putative glutamine amidotransferaseThis family consists of several hypothetical bacterial proteins of around 250 residues in length. The function of this family is unknown. The structure of this cytoplasmic domain was solved by the Midwest Center for Structural Genomics (MCSG). The st ...This family consists of several hypothetical bacterial proteins of around 250 residues in length. The function of this family is unknown. The structure of this cytoplasmic domain was solved by the Midwest Center for Structural Genomics (MCSG). The structure has been classified as part of the Class-I Glutamine amidotransferase superfamily owing to similarity with other known structures. The monomer combines with itself to form a hexamer, and this hexamer exposes a potential catalytic surface rich in Glu, Asp, Tyr, Ser.Trp and His residues [1].
Domain

InterPro: Protein Family Classification InterPro Database Homepage