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1UNF

The crystal structure of the eukaryotic FeSOD from Vigna unguiculata suggests a new enzymatic mechanism

Functional Information from GO Data
ChainGOidnamespacecontents
X0004784molecular_functionsuperoxide dismutase activity
X0005737cellular_componentcytoplasm
X0006801biological_processsuperoxide metabolic process
X0007623biological_processcircadian rhythm
X0009416biological_processresponse to light stimulus
X0009507cellular_componentchloroplast
X0009536cellular_componentplastid
X0009642biological_processresponse to light intensity
X0010193biological_processresponse to ozone
X0016491molecular_functionoxidoreductase activity
X0019430biological_processremoval of superoxide radicals
X0019904molecular_functionprotein domain specific binding
X0042644cellular_componentchloroplast nucleoid
X0046686biological_processresponse to cadmium ion
X0046688biological_processresponse to copper ion
X0046872molecular_functionmetal ion binding
Functional Information from PDB Data
site_idAC1
Number of Residues5
DetailsBINDING SITE FOR RESIDUE FE X1239
ChainResidue
XHIS43
XHIS95
XASP195
XHIS199
XHOH2141

Functional Information from PROSITE/UniProt
site_idPS00088
Number of Residues8
DetailsSOD_MN Manganese and iron superoxide dismutases signature. DvWEHAYY
ChainResidueDetails
XASP195-TYR202

239803

PDB entries from 2025-08-06

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