7XTO | pdb_00007xto

Structure of ClA2 reveal the Mechanism of soil bacterial derived chlorinase


Domain Annotation: ECOD Classification ECOD Database Homepage

ChainsFamily NameDomain Identifier ArchitecturePossible HomologyHomologyTopologyFamilyProvenance Source (Version)
FECH_1e7xtoF1 A: alpha bundlesX: RNase A-likeH: RNase A-likeT: RNase A-likeF: ECH_1ECOD (develop294)
EECH_1e7xtoE1 A: alpha bundlesX: RNase A-likeH: RNase A-likeT: RNase A-likeF: ECH_1ECOD (develop294)
D [auth B]ECH_1e7xtoB1 A: alpha bundlesX: RNase A-likeH: RNase A-likeT: RNase A-likeF: ECH_1ECOD (develop294)
C [auth D]ECH_1e7xtoD1 A: alpha bundlesX: RNase A-likeH: RNase A-likeT: RNase A-likeF: ECH_1ECOD (develop294)
B [auth C]ECH_1e7xtoC1 A: alpha bundlesX: RNase A-likeH: RNase A-likeT: RNase A-likeF: ECH_1ECOD (develop294)
AECH_1e7xtoA1 A: alpha bundlesX: RNase A-likeH: RNase A-likeT: RNase A-likeF: ECH_1ECOD (develop294)

Domain Annotation: CATH CATH Database Homepage

ChainDomainClassArchitectureTopologyHomologyProvenance Source (Version)
F3.40.50.10790 Alpha Beta 3-Layer(aba) Sandwich Rossmann fold S-adenosyl-l-methionine hydroxide adenosyltransferase, N-terminalCATH (utative)
F2.40.30.90 Mainly Beta Beta Barrel Elongation Factor Tu (Ef-tu) domain 3CATH (utative)
E3.40.50.10790 Alpha Beta 3-Layer(aba) Sandwich Rossmann fold S-adenosyl-l-methionine hydroxide adenosyltransferase, N-terminalCATH (utative)
E2.40.30.90 Mainly Beta Beta Barrel Elongation Factor Tu (Ef-tu) domain 3CATH (utative)
D [auth B]3.40.50.10790 Alpha Beta 3-Layer(aba) Sandwich Rossmann fold S-adenosyl-l-methionine hydroxide adenosyltransferase, N-terminalCATH (utative)
D [auth B]2.40.30.90 Mainly Beta Beta Barrel Elongation Factor Tu (Ef-tu) domain 3CATH (utative)
C [auth D]3.40.50.10790 Alpha Beta 3-Layer(aba) Sandwich Rossmann fold S-adenosyl-l-methionine hydroxide adenosyltransferase, N-terminalCATH (utative)
C [auth D]2.40.30.90 Mainly Beta Beta Barrel Elongation Factor Tu (Ef-tu) domain 3CATH (utative)
B [auth C]3.40.50.10790 Alpha Beta 3-Layer(aba) Sandwich Rossmann fold S-adenosyl-l-methionine hydroxide adenosyltransferase, N-terminalCATH (utative)
B [auth C]2.40.30.90 Mainly Beta Beta Barrel Elongation Factor Tu (Ef-tu) domain 3CATH (utative)
A3.40.50.10790 Alpha Beta 3-Layer(aba) Sandwich Rossmann fold S-adenosyl-l-methionine hydroxide adenosyltransferase, N-terminalCATH (utative)
A2.40.30.90 Mainly Beta Beta Barrel Elongation Factor Tu (Ef-tu) domain 3CATH (utative)

Protein Family Annotation Pfam Database Homepage

ChainsAccessionNameDescriptionCommentsSource
PF01887SAM hydroxide adenosyltransferase N-terminal domain (SAM_HAT_N)SAM hydroxide adenosyltransferase N-terminal domainThis is a family of proteins, previously known as DUF62, found in archaebacteria and bacteria. The structure of proteins in this family is similar to that of a bacterial fluorinating enzyme [1]. S-adenosyl-l-methionine hydroxide adenosyltransferases ...This is a family of proteins, previously known as DUF62, found in archaebacteria and bacteria. The structure of proteins in this family is similar to that of a bacterial fluorinating enzyme [1]. S-adenosyl-l-methionine hydroxide adenosyltransferases utilises a rigorously conserved amino acid side chain triad (Asp-Arg-His) which may have a role in activating water to hydroxide ion [2]. This family used to be known as DUF62.
Domain
PF20257SAM hydroxide adenosyltransferase C-terminal domain (SAM_HAT_C)SAM hydroxide adenosyltransferase C-terminal domainThis is a family of proteins, previously known as DUF62, found in archaebacteria and bacteria. The structure of proteins in this family is similar to that of a bacterial fluorinating enzyme [1]. S-adenosyl-l-methionine hydroxide adenosyltransferases ...This is a family of proteins, previously known as DUF62, found in archaebacteria and bacteria. The structure of proteins in this family is similar to that of a bacterial fluorinating enzyme [1]. S-adenosyl-l-methionine hydroxide adenosyltransferases utilises a rigorously conserved amino acid side chain triad (Asp-Arg-His) which may have a role in activating water to hydroxide ion [2]. This family used to be known as DUF62. This entry represents the C-terminal domain of these enzymes.
Domain