7U5S | pdb_00007u5s

CryoEM structure of the Candida albicans Aro1 dimer


Domain Annotation: SCOP2 Classification SCOP2 Database Homepage

ChainsTypeFamily Name Domain Identifier Family IdentifierProvenance Source (Version)
BSCOP2B SuperfamilyDehydroquinate synthase-like 8073345 3001905 SCOP2B (2022-06-29)
ASCOP2B SuperfamilyDehydroquinate synthase-like 8073345 3001905 SCOP2B (2022-06-29)

Domain Annotation: ECOD Classification ECOD Database Homepage

ChainsFamily NameDomain Identifier ArchitecturePossible HomologyHomologyTopologyFamilyProvenance Source (Version)
Be7u5sB1 A: Family A G protein-coupled receptor-likeX: Family A G protein-coupled receptor-likeH: Family A G protein-coupled receptor-likeT: fn3F:ECOD (20:10:01)
Ae7u5sA1 A: Family A G protein-coupled receptor-likeX: Family A G protein-coupled receptor-likeH: Family A G protein-coupled receptor-likeT: fn3F:ECOD (20:10:01)

Protein Family Annotation Pfam Database Homepage

ChainsAccessionNameDescriptionCommentsSource
A, B
PF246213-dehydroquinate synthase C-terminal (DHQS_C)3-dehydroquinate synthase C-terminalThis entry represents the C-terminal domain of 3-dehydroquinate synthase (DHQS) and related proteins. DHQS catalyses the formation of dehydroquinate (DHQ) and orthophosphate from 3-deoxy-D-arabino heptulosonic 7 phosphate. This reaction is part of t ...This entry represents the C-terminal domain of 3-dehydroquinate synthase (DHQS) and related proteins. DHQS catalyses the formation of dehydroquinate (DHQ) and orthophosphate from 3-deoxy-D-arabino heptulosonic 7 phosphate. This reaction is part of the shikimate pathway which is involved in the biosynthesis of aromatic amino acids. DHQS consists of an N-terminal Rossmann fold domain and a C-terminal alpha-helical domain. The active site is located in a cleft between the two somains. This domain contains most of the residues involved in catalysis and in substrate and Zn2+ binding [1]. This domain is also found in AROM proteins which are pentafunctional enzymes that catalyse 5 consecutive enzymatic reactions in prechorismate polyaromatic amino acid biosynthesis.
Domain
A, B
PF00275EPSP synthase (3-phosphoshikimate 1-carboxyvinyltransferase) (EPSP_synthase)EPSP synthase (3-phosphoshikimate 1-carboxyvinyltransferase)- Family
A, B
PF017613-dehydroquinate synthase N-terminal (DHQ_synthase)3-dehydroquinate synthase N-terminalThe 3-dehydroquinate synthase EC:4.6.1.3 domain is present in isolation in various bacterial 3-dehydroquinate synthases and also present as a domain in the pentafunctional AROM polypeptide Swiss:P07547 [2]. 3-dehydroquinate (DHQ) synthase catalyses ...The 3-dehydroquinate synthase EC:4.6.1.3 domain is present in isolation in various bacterial 3-dehydroquinate synthases and also present as a domain in the pentafunctional AROM polypeptide Swiss:P07547 [2]. 3-dehydroquinate (DHQ) synthase catalyses the formation of dehydroquinate (DHQ) and orthophosphate from 3-deoxy-D-arabino heptulosonic 7 phosphate [1]. This reaction is part of the shikimate pathway which is involved in the biosynthesis of aromatic amino acids. This is the Rossmann fold domain found at the N-terminal of these proteins, which binds NAD+ in an inverted orientation to that observed in all other classic Rossmann fold proteins [3].
Domain
A, B
PF01202Shikimate kinase (SKI)Shikimate kinaseDomain
A, B
PF01488Shikimate / quinate 5-dehydrogenase (Shikimate_DH)Shikimate / quinate 5-dehydrogenase- Family
A, B
PF08501Shikimate dehydrogenase substrate binding domain (Shikimate_dh_N)Shikimate dehydrogenase substrate binding domainThis domain is the substrate binding domain of shikimate dehydrogenase [1]. Domain
A, B
PF01487Type I 3-dehydroquinase (DHquinase_I)Type I 3-dehydroquinaseType I 3-dehydroquinase, (3-dehydroquinate dehydratase or DHQase.) Catalyses the cis-dehydration of 3-dehydroquinate via a covalent imine intermediate giving dehydroshikimate. Dehydroquinase functions in the shikimate pathway which is involved in the ...Type I 3-dehydroquinase, (3-dehydroquinate dehydratase or DHQase.) Catalyses the cis-dehydration of 3-dehydroquinate via a covalent imine intermediate giving dehydroshikimate. Dehydroquinase functions in the shikimate pathway which is involved in the biosynthesis of aromatic amino acids. Type II 3-dehydroquinase catalyses the trans-dehydration of 3-dehydroshikimate see Pfam:PF01220.
Domain
A, B
PF18317Shikimate 5'-dehydrogenase C-terminal domain (SDH_C)Shikimate 5'-dehydrogenase C-terminal domainThis domain is found in the C-terminal region of Shikimate 5'-dehydrogenase (SDH) present in Methanocaldococcus jannaschii. SDH catalyses the NADPH-dependent reduction of 3-dehydroshikimate to shikimate in the shikimate pathway. The domain is found j ...This domain is found in the C-terminal region of Shikimate 5'-dehydrogenase (SDH) present in Methanocaldococcus jannaschii. SDH catalyses the NADPH-dependent reduction of 3-dehydroshikimate to shikimate in the shikimate pathway. The domain is found just after the C-terminal domain (Pfam:PF01488) which is responsible for NADP binding [1].
Domain

Gene Ontology: Gene Product Annotation Gene Ontology Database Homepage

ChainsPolymerMolecular FunctionBiological ProcessCellular Component
A, B
Pentafunctional AROM polypeptide