1gn2

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==Overview==
==Overview==
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With the aim of enhancing interactions involved in dimer formation, an, intersubunit disulfide bridge was engineered in the superoxide dismutase, enzyme of Mycobacterium tuberculosis. Ser-123 was chosen for mutation to, cysteine since it resides at the dimer interface where the serine side, chain interacts with the same residue in the opposite subunit. Gel, electrophoresis and X-ray crystallographic studies of the expressed mutant, confirmed formation of the disulfide bond under nonreducing conditions., However, the mutant protein was found to be less stable than the wild type, as judged by susceptibility to denaturation in the presence of guanidine, hydrochloride. Decreased stability probably results from formation of a, disulfide bridge with a suboptimal torsion angle and exclusion of solvent, molecules from the dimer interface.
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With the aim of enhancing interactions involved in dimer formation, an intersubunit disulfide bridge was engineered in the superoxide dismutase enzyme of Mycobacterium tuberculosis. Ser-123 was chosen for mutation to cysteine since it resides at the dimer interface where the serine side chain interacts with the same residue in the opposite subunit. Gel electrophoresis and X-ray crystallographic studies of the expressed mutant confirmed formation of the disulfide bond under nonreducing conditions. However, the mutant protein was found to be less stable than the wild type as judged by susceptibility to denaturation in the presence of guanidine hydrochloride. Decreased stability probably results from formation of a disulfide bridge with a suboptimal torsion angle and exclusion of solvent molecules from the dimer interface.
==About this Structure==
==About this Structure==
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[[Category: Single protein]]
[[Category: Single protein]]
[[Category: Superoxide dismutase]]
[[Category: Superoxide dismutase]]
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[[Category: Bunting, K.A.]]
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[[Category: Bunting, K A.]]
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[[Category: Cooper, J.B.]]
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[[Category: Cooper, J B.]]
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[[Category: Tickle, I.J.]]
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[[Category: Tickle, I J.]]
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[[Category: Young, D.B.]]
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[[Category: Young, D B.]]
[[Category: FE]]
[[Category: FE]]
[[Category: iron]]
[[Category: iron]]
[[Category: oxidoreductase]]
[[Category: oxidoreductase]]
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''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Sun Feb 3 09:41:07 2008''
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''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Thu Feb 21 12:51:51 2008''

Revision as of 10:51, 21 February 2008


1gn2, resolution 3.4Å

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S123C MUTANT OF THE IRON-SUPEROXIDE DISMUTASE FROM MYCOBACTERIUM TUBERCULOSIS.

Overview

With the aim of enhancing interactions involved in dimer formation, an intersubunit disulfide bridge was engineered in the superoxide dismutase enzyme of Mycobacterium tuberculosis. Ser-123 was chosen for mutation to cysteine since it resides at the dimer interface where the serine side chain interacts with the same residue in the opposite subunit. Gel electrophoresis and X-ray crystallographic studies of the expressed mutant confirmed formation of the disulfide bond under nonreducing conditions. However, the mutant protein was found to be less stable than the wild type as judged by susceptibility to denaturation in the presence of guanidine hydrochloride. Decreased stability probably results from formation of a disulfide bridge with a suboptimal torsion angle and exclusion of solvent molecules from the dimer interface.

About this Structure

1GN2 is a Single protein structure of sequence from Mycobacterium tuberculosis with as ligand. Active as Superoxide dismutase, with EC number 1.15.1.1 Known structural/functional Site: . Full crystallographic information is available from OCA.

Reference

Engineering of an intersubunit disulfide bridge in the iron-superoxide dismutase of Mycobacterium tuberculosis., Bunting KA, Cooper JB, Tickle IJ, Young DB, Arch Biochem Biophys. 2002 Jan 1;397(1):69-76. PMID:11747311

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