Title of article :
Subunit dissociation and metal binding by Escherichia coli apo-manganese superoxide dismutase
Author/Authors :
Whittaker، نويسنده , , Mei M. and Lerch، نويسنده , , Thomas F. and Kirillova، نويسنده , , Olga and Chapman، نويسنده , , Michael S. and Whittaker، نويسنده , , James W.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2011
Pages :
13
From page :
213
To page :
225
Abstract :
Metal binding by apo-manganese superoxide dismutase (apo-MnSOD) is essential for functional maturation of the enzyme. Previous studies have demonstrated that metal binding by apo-MnSOD is conformationally gated, requiring protein reorganization for the metal to bind. We have now solved the X-ray crystal structure of apo-MnSOD at 1.9 Å resolution. The organization of active site residues is independent of the presence of the metal cofactor, demonstrating that protein itself templates the unusual metal coordination geometry. Electrophoretic analysis of mixtures of apo- and (Mn2)-MnSOD, dye-conjugated protein, or C-terminal Strep-tag II fusion protein reveals a dynamic subunit exchange process associated with cooperative metal binding by the two subunits of the dimeric protein. In contrast, (S126C) (SS) apo-MnSOD, which contains an inter-subunit covalent disulfide-crosslink, exhibits anti-cooperative metal binding. The protein concentration dependence of metal uptake kinetics implies that protein dissociation is involved in metal binding by the wild type apo-protein, although other processes may also contribute to gating metal uptake. Protein concentration dependent small-zone size exclusion chromatography is consistent with apo-MnSOD dimer dissociation at low protein concentration (KD = 1 × 10−6 M). Studies on metal uptake by apo-MnSOD in Escherichia coli cells show that the protein exhibits similar behavior in vivo and in vitro.
Keywords :
Manganese , Metal binding , Electrophoretic mobility shift , Dismutase , Superoxide , protein interactions
Journal title :
Archives of Biochemistry and Biophysics
Serial Year :
2011
Journal title :
Archives of Biochemistry and Biophysics
Record number :
1631766
Link To Document :
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