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1ear

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==Overview==
==Overview==
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Bacillus pasteurii UreE (BpUreE) is a putative chaperone assisting the, insertion of Ni(2+) ions in the active site of urease. The x-ray structure, of the protein has been determined for two crystal forms, at 1.7 and 1.85, A resolution, using SIRAS phases derived from a Hg(2+)-derivative. BpUreE, is composed of distinct N- and C-terminal domains, connected by a short, flexible linker. The structure reveals the topology of an elongated, homodimer, formed by interaction of the two C-terminal domains through, hydrophobic interactions. A single Zn(2+) ion bound to four conserved, His-100 residues, one from each monomer, connects two dimers resulting in, a tetrameric BpUreE known to be formed in concentrated solutions. The, Zn(2+) ion can be replaced by Ni(2+) as shown by anomalous difference maps, obtained on a crystal of BpUreE soaked in a solution containing NiCl(2). A, large hydrophobic patch surrounding the metal ion site is surface-exposed, in the biologically relevant dimer. The BpUreE structure represents the, first for this class of proteins and suggests a possible role for UreE in, the urease nickel-center assembly.
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Bacillus pasteurii UreE (BpUreE) is a putative chaperone assisting the insertion of Ni(2+) ions in the active site of urease. The x-ray structure of the protein has been determined for two crystal forms, at 1.7 and 1.85 A resolution, using SIRAS phases derived from a Hg(2+)-derivative. BpUreE is composed of distinct N- and C-terminal domains, connected by a short flexible linker. The structure reveals the topology of an elongated homodimer, formed by interaction of the two C-terminal domains through hydrophobic interactions. A single Zn(2+) ion bound to four conserved His-100 residues, one from each monomer, connects two dimers resulting in a tetrameric BpUreE known to be formed in concentrated solutions. The Zn(2+) ion can be replaced by Ni(2+) as shown by anomalous difference maps obtained on a crystal of BpUreE soaked in a solution containing NiCl(2). A large hydrophobic patch surrounding the metal ion site is surface-exposed in the biologically relevant dimer. The BpUreE structure represents the first for this class of proteins and suggests a possible role for UreE in the urease nickel-center assembly.
==About this Structure==
==About this Structure==
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[[Category: Single protein]]
[[Category: Single protein]]
[[Category: Sporosarcina pasteurii]]
[[Category: Sporosarcina pasteurii]]
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[[Category: Beeumen, J.Van.]]
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[[Category: Beeumen, J Van.]]
[[Category: Ciurli, S.]]
[[Category: Ciurli, S.]]
[[Category: Remaut, H.]]
[[Category: Remaut, H.]]
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[[Category: urease operon]]
[[Category: urease operon]]
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''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Sun Feb 3 09:38:50 2008''
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''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Thu Feb 21 12:25:45 2008''

Revision as of 10:25, 21 February 2008


1ear, resolution 1.7Å

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CRYSTAL STRUCTURE OF BACILLUS PASTEURII UREE AT 1.7 A. TYPE II CRYSTAL FORM.

Overview

Bacillus pasteurii UreE (BpUreE) is a putative chaperone assisting the insertion of Ni(2+) ions in the active site of urease. The x-ray structure of the protein has been determined for two crystal forms, at 1.7 and 1.85 A resolution, using SIRAS phases derived from a Hg(2+)-derivative. BpUreE is composed of distinct N- and C-terminal domains, connected by a short flexible linker. The structure reveals the topology of an elongated homodimer, formed by interaction of the two C-terminal domains through hydrophobic interactions. A single Zn(2+) ion bound to four conserved His-100 residues, one from each monomer, connects two dimers resulting in a tetrameric BpUreE known to be formed in concentrated solutions. The Zn(2+) ion can be replaced by Ni(2+) as shown by anomalous difference maps obtained on a crystal of BpUreE soaked in a solution containing NiCl(2). A large hydrophobic patch surrounding the metal ion site is surface-exposed in the biologically relevant dimer. The BpUreE structure represents the first for this class of proteins and suggests a possible role for UreE in the urease nickel-center assembly.

About this Structure

1EAR is a Single protein structure of sequence from Sporosarcina pasteurii with as ligand. Known structural/functional Site: . Full crystallographic information is available from OCA.

Reference

Structural basis for Ni(2+) transport and assembly of the urease active site by the metallochaperone UreE from Bacillus pasteurii., Remaut H, Safarov N, Ciurli S, Van Beeumen J, J Biol Chem. 2001 Dec 28;276(52):49365-70. Epub 2001 Oct 15. PMID:11602602

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