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* Residue conservation analysis
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Gene Ontology (GO) functional annotation
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Cellular component
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intracellular
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1 term
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Biological process
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DNA repair
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2 terms
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Biochemical function
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catalytic activity
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5 terms
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DOI no:
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Biochemistry
41:3931-3942
(2002)
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PubMed id:
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Noncysteinyl coordination to the [4Fe-4S]2+ cluster of the DNA repair adenine glycosylase MutY introduced via site-directed mutagenesis. Structural characterization of an unusual histidinyl-coordinated cluster.
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T.E.Messick,
N.H.Chmiel,
M.P.Golinelli,
M.R.Langer,
L.Joshua-Tor,
S.S.David.
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ABSTRACT
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The Escherichia coli DNA repair enzyme MutY plays an important role in the
recognition and repair of 7,8-dihydro-8-oxo-2'-deoxyguanosine-2'-deoxyadenosine
(OG*A) mismatches in DNA. MutY prevents DNA mutations caused by the
misincorporation of A opposite OG by catalyzing the deglycosylation of the
aberrant adenine. MutY is representative of a unique subfamily of DNA repair
enzymes that also contain a [4Fe-4S]2+ cluster, which has been implicated in
substrate recognition. Previously, we have used site-directed mutagenesis to
individually replace the cysteine ligands to the [4Fe-4S]2+ cluster of E. coli
MutY with serine, histidine, or alanine. These experiments suggested that
histidine coordination to the iron-sulfur cluster may be accommodated in MutY at
position 199. Purification and enzymatic analysis of C199H and C199S forms
indicated that these forms behave nearly identical to the WT enzyme.
Furthermore, introduction of the C199H mutation in a truncated form of MutY
(C199HT) allowed for crystallization and structural characterization of the
cluster coordination. The C199HT structure showed that
histidine coordinated to the iron cluster although comparison to the structure
of the WT truncated enzyme indicated that the occupancy of iron at the modified
position had been reduced to 60%. Electron paramagnetic resonance (EPR)
spectroscopy on samples of C199HT indicates that a significant percentage
(15-30%) of iron clusters were of the [3Fe-4S]1+ form. Oxidation of the C199HT
enzyme with ferricyanide increases the amount of the 3Fe cluster by
approximately 2-fold. Detailed kinetic analysis on samples containing a mixture
of [3Fe-4S]1+ and [4Fe-4S]2+ forms indicated that the reactivity of the
[3Fe-4S]1+ C199HT enzyme does not differ significantly from that of the WT
truncated enzyme. The relative resistance of the [4Fe-4S]2+ cluster toward
oxidation, as well as the retention of activity of the [3Fe-4S]1+ form, may be
an important aspect of the role of MutY in repair of DNA damage resulting from
oxidative stress.
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Literature references that cite this PDB file's key reference
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PubMed id
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Reference
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A.K.Boal,
E.Yavin,
and
J.K.Barton
(2007).
DNA repair glycosylases with a [4Fe-4S] cluster: a redox cofactor for DNA-mediated charge transport?
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J Inorg Biochem, 101,
1913-1921.
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M.S.Alam,
S.K.Garg,
and
P.Agrawal
(2007).
Molecular function of WhiB4/Rv3681c of Mycobacterium tuberculosis H37Rv: a [4Fe-4S] cluster co-ordinating protein disulphide reductase.
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Mol Microbiol, 63,
1414-1431.
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E.Yavin,
A.K.Boal,
E.D.Stemp,
E.M.Boon,
A.L.Livingston,
V.L.O'Shea,
S.S.David,
and
J.K.Barton
(2005).
Protein-DNA charge transport: redox activation of a DNA repair protein by guanine radical.
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Proc Natl Acad Sci U S A, 102,
3546-3551.
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O.A.Lukianova,
and
S.S.David
(2005).
A role for iron-sulfur clusters in DNA repair.
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Curr Opin Chem Biol, 9,
145-151.
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M.C.Corbett,
Y.Hu,
F.Naderi,
M.W.Ribbe,
B.Hedman,
and
K.O.Hodgson
(2004).
Comparison of iron-molybdenum cofactor-deficient nitrogenase MoFe proteins by X-ray absorption spectroscopy: implications for P-cluster biosynthesis.
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J Biol Chem, 279,
28276-28282.
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A.L.Lu,
and
P.M.Wright
(2003).
Characterization of an Escherichia coli mutant MutY with a cysteine to alanine mutation at the iron-sulfur cluster domain.
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Biochemistry, 42,
3742-3750.
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E.M.Boon,
A.L.Livingston,
N.H.Chmiel,
S.S.David,
and
J.K.Barton
(2003).
DNA-mediated charge transport for DNA repair.
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Proc Natl Acad Sci U S A, 100,
12543-12547.
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The most recent references are shown first.
Citation data come partly from CiteXplore and partly
from an automated harvesting procedure. Note that this is likely to be
only a partial list as not all journals are covered by
either method. However, we are continually building up the citation data
so more and more references will be included with time.
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