Molecular Playground/Nickel Superoxide Dismutase

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NiSOD is a homohexamer ('''Fig. 2''') composed of a <scene name='User:Carolyn_Carr/Sandbox_1/Nisod_dimer/1'>dimer</scene> of <scene name='User:Carolyn_Carr/Sandbox_1/Nisod_trimer/1'>trimers</scene> and binds <scene name='User:Carolyn_Carr/Sandbox_1/Nisod_monomer/1'>one nickel ion per monomer</scene>. The residues coordinated to the nickel active site are located within the first six N-terminal amino acids, termed the <scene name='User:Carolyn_Carr/Sandbox_1/Nickel-hook/1'>nickel-hook</scene>. The nickel in the active site cycles between Ni(II) and Ni(III). In <scene name='User:Carolyn_Carr/Sandbox_1/Nickel-his_off2/1'>the Ni(II) state</scene> the nickel has a square planar geometry and is coordinated by the side chains of Cys2 and Cys5 as well as the N-terminal amine and the backbone amide group of Cys2. When <scene name='User:Carolyn_Carr/Sandbox_1/Nickel-his_on/1'>oxidized to Ni(III)</scene>, the imidazole group of His1 binds in the axial position forming a square pyramidal geometry.
NiSOD is a homohexamer ('''Fig. 2''') composed of a <scene name='User:Carolyn_Carr/Sandbox_1/Nisod_dimer/1'>dimer</scene> of <scene name='User:Carolyn_Carr/Sandbox_1/Nisod_trimer/1'>trimers</scene> and binds <scene name='User:Carolyn_Carr/Sandbox_1/Nisod_monomer/1'>one nickel ion per monomer</scene>. The residues coordinated to the nickel active site are located within the first six N-terminal amino acids, termed the <scene name='User:Carolyn_Carr/Sandbox_1/Nickel-hook/1'>nickel-hook</scene>. The nickel in the active site cycles between Ni(II) and Ni(III). In <scene name='User:Carolyn_Carr/Sandbox_1/Nickel-his_off2/1'>the Ni(II) state</scene> the nickel has a square planar geometry and is coordinated by the side chains of Cys2 and Cys5 as well as the N-terminal amine and the backbone amide group of Cys2. When <scene name='User:Carolyn_Carr/Sandbox_1/Nickel-his_on/1'>oxidized to Ni(III)</scene>, the imidazole group of His1 binds in the axial position forming a square pyramidal geometry.
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[[Image:NiSOD Hexamer.png|300 px|thumb|Fig. 2: Hexameric NiSOD. Figure created with PyMol. PDB ID [[1t6u]].]]
[[Image:NiSOD Hexamer.png|300 px|thumb|Fig. 2: Hexameric NiSOD. Figure created with PyMol. PDB ID [[1t6u]].]]

Revision as of 10:12, 29 December 2019

Ni-bound NiSOD (PDB ID: 1q0m). The yellow/red molecules represent sulphates, the grey/red molecules represent acetic acid, and the green spheres represent the nickel ions bound by the nickel-hook region.

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References


  1. Fridovich I. Superoxide dismutases. Annu Rev Biochem. 1975;44:147-59. PMID:1094908 doi:http://dx.doi.org/10.1146/annurev.bi.44.070175.001051
  2. Lee JW, Roe JH, Kang SO. Nickel-containing superoxide dismutase. Methods Enzymol. 2002;349:90-101. PMID:11912934
  3. Uedsemma, M., Tamm, T. Density-functional theory calculations of aqueous redox potentials of fourth-period transition metals. J. Phys. Chem. A. 2003 Aug 4;107:9997-10003. Epub 2003 Oct 23. 10.1021/jp0362741
  4. Bordo D, Matak D, Djinovic-Carugo K, Rosano C, Pesce A, Bolognesi M, Stroppolo ME, Falconi M, Battistoni A, Desideri A. Evolutionary constraints for dimer formation in prokaryotic Cu,Zn superoxide dismutase. J Mol Biol. 1999 Jan 8;285(1):283-96. PMID:9878406 doi:10.1006/jmbi.1998.2267
  5. Borgstahl GE, Parge HE, Hickey MJ, Beyer WF Jr, Hallewell RA, Tainer JA. The structure of human mitochondrial manganese superoxide dismutase reveals a novel tetrameric interface of two 4-helix bundles. Cell. 1992 Oct 2;71(1):107-18. PMID:1394426
  6. Lah MS, Dixon MM, Pattridge KA, Stallings WC, Fee JA, Ludwig ML. Structure-function in Escherichia coli iron superoxide dismutase: comparisons with the manganese enzyme from Thermus thermophilus. Biochemistry. 1995 Feb 7;34(5):1646-60. PMID:7849024

See Also


1t6i
1t6q
1t6u
3g4x
3g4z
3g50

Proteopedia Page Contributors and Editors (what is this?)

Carolyn Carr, Alexander Berchansky, Michal Harel

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