3ubp
From Proteopedia
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[[Image:3ubp.png|left|200px]] | [[Image:3ubp.png|left|200px]] | ||
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{{STRUCTURE_3ubp| PDB=3ubp | SCENE= }} | {{STRUCTURE_3ubp| PDB=3ubp | SCENE= }} | ||
===DIAMIDOPHOSPHATE INHIBITED BACILLUS PASTEURII UREASE=== | ===DIAMIDOPHOSPHATE INHIBITED BACILLUS PASTEURII UREASE=== | ||
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{{ABSTRACT_PUBMED_10368287}} | {{ABSTRACT_PUBMED_10368287}} | ||
==About this Structure== | ==About this Structure== | ||
- | + | [[3ubp]] is a 3 chain structure of [[Urease]] with sequence from [http://en.wikipedia.org/wiki/Sporosarcina_pasteurii Sporosarcina pasteurii]. Full crystallographic information is available from [http://oca.weizmann.ac.il/oca-bin/ocashort?id=3UBP OCA]. | |
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+ | ==See Also== | ||
+ | *[[Urease|Urease]] | ||
==Reference== | ==Reference== | ||
- | <ref group="xtra">PMID: | + | <ref group="xtra">PMID:010368287</ref><ref group="xtra">PMID:015174863</ref><ref group="xtra">PMID:016584179</ref><references group="xtra"/> |
[[Category: Sporosarcina pasteurii]] | [[Category: Sporosarcina pasteurii]] | ||
[[Category: Urease]] | [[Category: Urease]] | ||
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[[Category: Nickel]] | [[Category: Nickel]] | ||
[[Category: Urease]] | [[Category: Urease]] | ||
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Revision as of 15:54, 27 July 2012
Contents |
DIAMIDOPHOSPHATE INHIBITED BACILLUS PASTEURII UREASE
Template:ABSTRACT PUBMED 10368287
About this Structure
3ubp is a 3 chain structure of Urease with sequence from Sporosarcina pasteurii. Full crystallographic information is available from OCA.
See Also
Reference
- Benini S, Rypniewski WR, Wilson KS, Miletti S, Ciurli S, Mangani S. A new proposal for urease mechanism based on the crystal structures of the native and inhibited enzyme from Bacillus pasteurii: why urea hydrolysis costs two nickels. Structure. 1999 Feb 15;7(2):205-16. PMID:10368287
- Estiu G, Merz KM Jr. The hydrolysis of urea and the proficiency of urease. J Am Chem Soc. 2004 Jun 9;126(22):6932-44. PMID:15174863 doi:10.1021/ja049327g
- Estiu G, Merz KM Jr. Catalyzed decomposition of urea. Molecular dynamics simulations of the binding of urea to urease. Biochemistry. 2006 Apr 11;45(14):4429-43. PMID:16584179 doi:10.1021/bi052020p