Domain Annotation: SCOP2 Classification SCOP2 Database Homepage

ChainsTypeFamily Name Domain Identifier Family IdentifierProvenance Source (Version)
ASCOP2B SuperfamilyMtdA-like8056181 3000046 SCOP2B (2022-06-29)
BSCOP2 FamilyFolD-like8056180 4000102 SCOP2 (2022-06-29)
BSCOP2 SuperfamilyMtdA-like8056181 3000046 SCOP2 (2022-06-29)

Domain Annotation: ECOD Classification ECOD Database Homepage

ChainsFamily NameDomain Identifier ArchitecturePossible HomologyHomologyTopologyFamilyProvenance Source (Version)
ATHF_DHG_CYH_Ce1a4iA1 A: a/b three-layered sandwichesX: Rossmann-likeH: Rossmann-relatedT: NAD(P)-binding Rossmann-fold domainsF: THF_DHG_CYH_CECOD (1.6)
ATHF_DHG_CYHe1a4iA2 A: a/b three-layered sandwichesX: Flavodoxin-likeH: Class I glutamine amidotransferase-likeT: Aminoacid dehydrogenase-like, N-terminal domainF: THF_DHG_CYHECOD (1.6)
BTHF_DHG_CYH_Ce1a4iB1 A: a/b three-layered sandwichesX: Rossmann-likeH: Rossmann-relatedT: NAD(P)-binding Rossmann-fold domainsF: THF_DHG_CYH_CECOD (1.6)
BTHF_DHG_CYHe1a4iB2 A: a/b three-layered sandwichesX: Flavodoxin-likeH: Class I glutamine amidotransferase-likeT: Aminoacid dehydrogenase-like, N-terminal domainF: THF_DHG_CYHECOD (1.6)

Domain Annotation: CATH CATH Database Homepage

Protein Family Annotation Pfam Database Homepage

ChainsAccessionNameDescriptionCommentsSource
A, B
PF02882Tetrahydrofolate dehydrogenase/cyclohydrolase, NAD(P)-binding domain (THF_DHG_CYH_C)Tetrahydrofolate dehydrogenase/cyclohydrolase, NAD(P)-binding domain- Domain
A, B
PF00763Tetrahydrofolate dehydrogenase/cyclohydrolase, catalytic domain (THF_DHG_CYH)Tetrahydrofolate dehydrogenase/cyclohydrolase, catalytic domain- Domain

Gene Ontology: Gene Product Annotation Gene Ontology Database Homepage

ChainsPolymerMolecular FunctionBiological ProcessCellular Component
A, B
METHYLENETETRAHYDROFOLATE DEHYDROGENASE / METHENYLTETRAHYDROFOLATE CYCLOHYDROLASE

Structure Motif Annotation: Mechanism and Catalytic Site Atlas M-CSA Database Homepage

ChainsEnzyme NameDescriptionCatalytic Residues
methylenetetrahydrofolate dehydrogenase (NADP+)  M-CSA #389

Enzymes involved in tetrahydrofolate metabolism are of particular pharmaceutical interest, as their function is crucial for amino acid and DNA biosynthesis.

In eukaryotes, the enzyme that performs this reaction occurs as a trifunctional enzyme that also has methylenetetrahydrofolate dehydrogenase (NADP+) (EC 1.5.1.5) and formate-tetrahydrofolate ligase (EC 6.3.4.3) activity. In some prokaryotes, it occurs as a bifunctional enzyme that also has dehydrogenase (EC 1.5.1.5) activity or formiminotetrahydrofolate cyclodeaminase (EC 4.3.1.4) activity. This particular entry represents the dehydrogenase activity.

Although the human protein represented here is actually trifunctional, the representative PDB structure only contains the dehydrogenase (D) and cyclohydrolase (C) domains, which have an overlapping active site (as determined by chemical modification and kinetic studies).

Defined by 3 residues: LYS:A-56GLN:A-100ASP:A-125
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methenyltetrahydrofolate cyclohydrolase  M-CSA #458

Enzymes involved in tetrahydrofolate metabolism are of particular pharmaceutical interest, as their function is crucial for amino acid and DNA biosynthesis.

In eukaryotes, the enzyme that performs this reaction occurs as a trifunctional enzyme that has two active sites: the bifunctional enzyme methylenetetrahydrofolate dehydrogenase – cyclohydrolase catalyses two sequential reactions involved in the interconversion of substituted tetrahydrofolates. The interconversion of 5,10-methylene-H4folate with 5,10-methenyl-H4folate is accomplished through the NADP+-dependent dehydrogenase activity, whereas 5,10-methenyl-H4folate and 10-formyl-H4folate are interconverted by the cyclohydrolase activity. The second domain represents the formate-tetrahydrofolate ligase (EC 6.3.4.3) activity.

Although the human protein represented here is actually trifunctional, the representative PDB structure only contains the dehydrogenase (D) and cyclohydrolase (C) domains, which have an overlapping active site (as determined by chemical modification and kinetic studies). This entry represents the bifunctional activity.

Defined by 3 residues: SER:A-49LYS:A-56GLN:A-100
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