2chn

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{{STRUCTURE_2chn| PDB=2chn | SCENE= }}
{{STRUCTURE_2chn| PDB=2chn | SCENE= }}
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'''BACTEROIDES THETAIOTAOMICRON HEXOSAMINIDASE WITH O-GLCNACASE ACTIVITY- NAG-THIAZOLINE COMPLEX'''
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===BACTEROIDES THETAIOTAOMICRON HEXOSAMINIDASE WITH O-GLCNACASE ACTIVITY- NAG-THIAZOLINE COMPLEX===
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==Overview==
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O-GlcNAc is an abundant post-translational modification of serine and threonine residues of nucleocytoplasmic proteins. This modification, found only within higher eukaryotes, is a dynamic modification that is often reciprocal to phosphorylation. In a manner analogous to phosphatases, a glycoside hydrolase termed O-GlcNAcase cleaves O-GlcNAc from modified proteins. Enzymes with high sequence similarity to human O-GlcNAcase are also found in human pathogens and symbionts. We report the three-dimensional structure of O-GlcNAcase from the human gut symbiont Bacteroides thetaiotaomicron both in its native form and in complex with a mimic of the reaction intermediate. Mutagenesis and kinetics studies show that the bacterial enzyme, very similarly to its human counterpart, operates via an unusual 'substrate-assisted' catalytic mechanism, which will inform the rational design of enzyme inhibitors.
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{{ABSTRACT_PUBMED_16565725}}
==About this Structure==
==About this Structure==
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[[Category: N-acetylglucosamibe]]
[[Category: N-acetylglucosamibe]]
[[Category: O-glcnacase]]
[[Category: O-glcnacase]]
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''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Mon Jul 28 08:09:12 2008''

Revision as of 05:09, 28 July 2008

Template:STRUCTURE 2chn

BACTEROIDES THETAIOTAOMICRON HEXOSAMINIDASE WITH O-GLCNACASE ACTIVITY- NAG-THIAZOLINE COMPLEX

Template:ABSTRACT PUBMED 16565725

About this Structure

2CHN is a Protein complex structure of sequences from Bacteroides thetaiotaomicron. Full crystallographic information is available from OCA.

Reference

Structure and mechanism of a bacterial beta-glucosaminidase having O-GlcNAcase activity., Dennis RJ, Taylor EJ, Macauley MS, Stubbs KA, Turkenburg JP, Hart SJ, Black GN, Vocadlo DJ, Davies GJ, Nat Struct Mol Biol. 2006 Apr;13(4):365-71. Epub 2006 Mar 26. PMID:16565725

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