

Database accession: MF7000484
Name: Mouse Glyoxalase I with 18-beta-glycyrrhetinic acid
PDB ID: 4pv5
Experimental method: X-ray (2.30 Å)
Assembly: Homodimer
Source organism: Mus musculus
Primary publication of the structure:
Zhang H, Huang Q, Zhai J, Zhao YN, Zhang LP, Chen YY, Zhang RW, Li Q, Hu XP
Structural basis for 18-β-glycyrrhetinic acid as a novel non-GSH analog glyoxalase I inhibitor.
(2015) Acta Pharmacol.Sin. 36: 1145-50
PMID: 26279158
Abstract:
Not available.
Annotations from the GeneOntology database. Only terms that fit at least two of the interacting proteins are shown. Molecular function:
lactoylglutathione lyase activity
lactoylglutathione lyase activity
zinc ion binding
zinc ion binding
Biological process:
glutathione metabolic process
glutathione metabolic process
methylglyoxal catabolic process to D-lactate via S-lactoyl-glutathione
methylglyoxal catabolic process to D-lactate via S-lactoyl-glutathione
methylglyoxal metabolic process
methylglyoxal metabolic process
negative regulation of apoptotic process
negative regulation of apoptotic process
osteoclast differentiation
osteoclast differentiation
regulation of transcription by RNA polymerase II
regulation of transcription by RNA polymerase II
Cellular component:
cytosol
cytosol
nucleoplasm
nucleoplasm
plasma membrane
plasma membrane
Structural annotations of the participating protein chains.Entry contents: 2 distinct polypeptide molecules
Chains: A, B
Notes: All chains according to the most probable oligomerization state stored in PDBe were considered.
Number of unique protein segments: 1
Name: Lactoylglutathione lyase
Source organism: Mus musculus
Length: 184 residues
Sequence:
Sequence according to the corresponding UniProt protein segmentMAEPQPASSGLTDETAFSCCSDPDPSTKDFLLQQTMLRIKDPKKSLDFYTRVLGLTLLQKLDFPAMKFSLYFLAYEDKNDIPKDKSEKTAWTFSRKATLELTHNWGTEDDETQSYHNGNSDPRGFGHIGIAVPDVYSACKRFEELGVKFVKKPDDGKMKGLAFIQDPDGYWIEILNPNKIATII
UniProtKB AC: Q9CPU0 (positions: 13-182)
Coverage: 92%
Name: Lactoylglutathione lyase
Source organism: Mus musculus
Length: 184 residues
Sequence:
Sequence according to the corresponding UniProt protein segmentMAEPQPASSGLTDETAFSCCSDPDPSTKDFLLQQTMLRIKDPKKSLDFYTRVLGLTLLQKLDFPAMKFSLYFLAYEDKNDIPKDKSEKTAWTFSRKATLELTHNWGTEDDETQSYHNGNSDPRGFGHIGIAVPDVYSACKRFEELGVKFVKKPDDGKMKGLAFIQDPDGYWIEILNPNKIATII
UniProtKB AC: Q9CPU0 (positions: 3-184)
Coverage: 98%
Evidence demonstrating that the participating proteins are unstructured prior to the interaction and their folding is coupled to binding. Representative domain in related structures: Glyoxalase/Bleomycin resistance protein/Dioxygenase superfamily
Evidence level: Indirect evidence
Evidence coverage: The full structure participates in mutual synergistic folding.
Complex Evidence:
The VOC superfamily of metalloenzymes is characterized by a three-dimensional domain-swapped arrangement of tandem βαβββ-motifs (PMID:24447055). The original gene duplication event led to the βαβββ tandem structure, which appears to require dimerization for stability. Two different forms of domain-swapped dimers may coexist in solution (PMID:12121648) in which both subunits of the homodimer participate in coordination of each metal ion and formation of the U-shaped active sites in the enzyme (PMID:24004181). The complex is predominantly dimeric in solution (gel filtration) (PMID:12121648).
Chain A:
N/A
Chain B:
N/A
Surface and contacts features:
Structures from the PDB that contain the same number of proteins, and the proteins from the two structures show a sufficient degree of pairwise similarity, i.e. they belong to the same UniRef90 cluster (the full proteins exhibit at least 90% sequence identity) and convey roughly the same region to their respective interactions (the two regions from the two proteins share a minimum of 70% overlap). Download the CIF file (.cif)
Download this entry's XML file (.xml)
Download this entry's JSON file (.json)